TWI434905B - Electrodepositable coating composition containing a cyclic guanidine - Google Patents
Electrodepositable coating composition containing a cyclic guanidine Download PDFInfo
- Publication number
- TWI434905B TWI434905B TW097130404A TW97130404A TWI434905B TW I434905 B TWI434905 B TW I434905B TW 097130404 A TW097130404 A TW 097130404A TW 97130404 A TW97130404 A TW 97130404A TW I434905 B TWI434905 B TW I434905B
- Authority
- TW
- Taiwan
- Prior art keywords
- coating composition
- electrodepositable coating
- polymer
- amine
- electrodepositable
- Prior art date
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- 239000008199 coating composition Substances 0.000 title claims description 146
- 125000004122 cyclic group Chemical group 0.000 title description 9
- ZRALSGWEFCBTJO-UHFFFAOYSA-N Guanidine Chemical compound NC(N)=N ZRALSGWEFCBTJO-UHFFFAOYSA-N 0.000 title description 4
- CHJJGSNFBQVOTG-UHFFFAOYSA-N N-methyl-guanidine Natural products CNC(N)=N CHJJGSNFBQVOTG-UHFFFAOYSA-N 0.000 title description 2
- SWSQBOPZIKWTGO-UHFFFAOYSA-N dimethylaminoamidine Natural products CN(C)C(N)=N SWSQBOPZIKWTGO-UHFFFAOYSA-N 0.000 title description 2
- 229920000642 polymer Polymers 0.000 claims description 127
- 239000000203 mixture Substances 0.000 claims description 120
- -1 cyclic oxime Chemical class 0.000 claims description 106
- 229920005989 resin Polymers 0.000 claims description 86
- 239000011347 resin Substances 0.000 claims description 86
- 239000003795 chemical substances by application Substances 0.000 claims description 66
- 238000006243 chemical reaction Methods 0.000 claims description 52
- 150000001412 amines Chemical class 0.000 claims description 45
- 239000002253 acid Substances 0.000 claims description 43
- 239000004593 Epoxy Substances 0.000 claims description 36
- 239000007787 solid Substances 0.000 claims description 35
- 239000007795 chemical reaction product Substances 0.000 claims description 32
- 239000012948 isocyanate Substances 0.000 claims description 32
- 238000004070 electrodeposition Methods 0.000 claims description 31
- 229920000768 polyamine Polymers 0.000 claims description 28
- 239000001257 hydrogen Substances 0.000 claims description 27
- 229910052739 hydrogen Inorganic materials 0.000 claims description 27
- 125000003118 aryl group Chemical group 0.000 claims description 26
- UFHFLCQGNIYNRP-UHFFFAOYSA-N Hydrogen Chemical compound [H][H] UFHFLCQGNIYNRP-UHFFFAOYSA-N 0.000 claims description 24
- 125000000524 functional group Chemical group 0.000 claims description 23
- 238000000227 grinding Methods 0.000 claims description 23
- 150000002513 isocyanates Chemical class 0.000 claims description 23
- 229910052751 metal Inorganic materials 0.000 claims description 23
- 239000002184 metal Substances 0.000 claims description 23
- 150000003141 primary amines Chemical class 0.000 claims description 23
- LFQSCWFLJHTTHZ-UHFFFAOYSA-N Ethanol Chemical compound CCO LFQSCWFLJHTTHZ-UHFFFAOYSA-N 0.000 claims description 22
- 239000000654 additive Substances 0.000 claims description 22
- 125000000217 alkyl group Chemical group 0.000 claims description 20
- 150000001875 compounds Chemical class 0.000 claims description 20
- 239000003054 catalyst Substances 0.000 claims description 19
- 239000000758 substrate Substances 0.000 claims description 19
- 150000003335 secondary amines Chemical class 0.000 claims description 18
- 230000000996 additive effect Effects 0.000 claims description 17
- 125000003700 epoxy group Chemical group 0.000 claims description 13
- LRHPLDYGYMQRHN-UHFFFAOYSA-N N-Butanol Chemical compound CCCCO LRHPLDYGYMQRHN-UHFFFAOYSA-N 0.000 claims description 12
- JOYRKODLDBILNP-UHFFFAOYSA-N Ethyl urethane Chemical compound CCOC(N)=O JOYRKODLDBILNP-UHFFFAOYSA-N 0.000 claims description 11
- LSNNMFCWUKXFEE-UHFFFAOYSA-M Bisulfite Chemical compound OS([O-])=O LSNNMFCWUKXFEE-UHFFFAOYSA-M 0.000 claims description 10
- 150000005676 cyclic carbonates Chemical class 0.000 claims description 10
- 150000003839 salts Chemical class 0.000 claims description 10
- QTBSBXVTEAMEQO-UHFFFAOYSA-N Acetic acid Chemical compound CC(O)=O QTBSBXVTEAMEQO-UHFFFAOYSA-N 0.000 claims description 9
- OKKJLVBELUTLKV-UHFFFAOYSA-N Methanol Chemical compound OC OKKJLVBELUTLKV-UHFFFAOYSA-N 0.000 claims description 9
- 229920006317 cationic polymer Polymers 0.000 claims description 9
- 150000002148 esters Chemical class 0.000 claims description 9
- YIWUKEYIRIRTPP-UHFFFAOYSA-N 2-ethylhexan-1-ol Chemical compound CCCCC(CC)CO YIWUKEYIRIRTPP-UHFFFAOYSA-N 0.000 claims description 8
- BVKZGUZCCUSVTD-UHFFFAOYSA-L Carbonate Chemical compound [O-]C([O-])=O BVKZGUZCCUSVTD-UHFFFAOYSA-L 0.000 claims description 8
- KFZMGEQAYNKOFK-UHFFFAOYSA-N Isopropanol Chemical compound CC(C)O KFZMGEQAYNKOFK-UHFFFAOYSA-N 0.000 claims description 8
- 150000004658 ketimines Chemical class 0.000 claims description 8
- 150000003512 tertiary amines Chemical class 0.000 claims description 8
- POAOYUHQDCAZBD-UHFFFAOYSA-N 2-butoxyethanol Chemical compound CCCCOCCO POAOYUHQDCAZBD-UHFFFAOYSA-N 0.000 claims description 6
- AFVFQIVMOAPDHO-UHFFFAOYSA-N Methanesulfonic acid Chemical compound CS(O)(=O)=O AFVFQIVMOAPDHO-UHFFFAOYSA-N 0.000 claims description 6
- UCKMPCXJQFINFW-UHFFFAOYSA-N Sulphide Chemical compound [S-2] UCKMPCXJQFINFW-UHFFFAOYSA-N 0.000 claims description 6
- 125000000753 cycloalkyl group Chemical group 0.000 claims description 6
- JVTAAEKCZFNVCJ-UHFFFAOYSA-N lactic acid Chemical compound CC(O)C(O)=O JVTAAEKCZFNVCJ-UHFFFAOYSA-N 0.000 claims description 6
- BDAGIHXWWSANSR-UHFFFAOYSA-N methanoic acid Natural products OC=O BDAGIHXWWSANSR-UHFFFAOYSA-N 0.000 claims description 6
- 230000003472 neutralizing effect Effects 0.000 claims description 6
- ARXJGSRGQADJSQ-UHFFFAOYSA-N 1-methoxypropan-2-ol Chemical compound COCC(C)O ARXJGSRGQADJSQ-UHFFFAOYSA-N 0.000 claims description 5
- LHIJANUOQQMGNT-UHFFFAOYSA-N aminoethylethanolamine Chemical compound NCCNCCO LHIJANUOQQMGNT-UHFFFAOYSA-N 0.000 claims description 5
- 229910052797 bismuth Inorganic materials 0.000 claims description 5
- JCXGWMGPZLAOME-UHFFFAOYSA-N bismuth atom Chemical compound [Bi] JCXGWMGPZLAOME-UHFFFAOYSA-N 0.000 claims description 5
- 125000002524 organometallic group Chemical group 0.000 claims description 5
- ATJFFYVFTNAWJD-UHFFFAOYSA-N Tin Chemical compound [Sn] ATJFFYVFTNAWJD-UHFFFAOYSA-N 0.000 claims description 4
- JTXJZBMXQMTSQN-UHFFFAOYSA-N amino hydrogen carbonate Chemical compound NOC(O)=O JTXJZBMXQMTSQN-UHFFFAOYSA-N 0.000 claims description 4
- PAFZNILMFXTMIY-UHFFFAOYSA-N cyclohexylamine Chemical compound NC1CCCCC1 PAFZNILMFXTMIY-UHFFFAOYSA-N 0.000 claims description 4
- RUOJZAUFBMNUDX-UHFFFAOYSA-N propylene carbonate Chemical compound CC1COC(=O)O1 RUOJZAUFBMNUDX-UHFFFAOYSA-N 0.000 claims description 4
- 229910052718 tin Inorganic materials 0.000 claims description 4
- JOXIMZWYDAKGHI-UHFFFAOYSA-N toluene-4-sulfonic acid Chemical compound CC1=CC=C(S(O)(=O)=O)C=C1 JOXIMZWYDAKGHI-UHFFFAOYSA-N 0.000 claims description 4
- ZZXUZKXVROWEIF-UHFFFAOYSA-N 1,2-butylene carbonate Chemical compound CCC1COC(=O)O1 ZZXUZKXVROWEIF-UHFFFAOYSA-N 0.000 claims description 3
- RNLHGQLZWXBQNY-UHFFFAOYSA-N 3-(aminomethyl)-3,5,5-trimethylcyclohexan-1-amine Chemical compound CC1(C)CC(N)CC(C)(CN)C1 RNLHGQLZWXBQNY-UHFFFAOYSA-N 0.000 claims description 3
- OSWFIVFLDKOXQC-UHFFFAOYSA-N 4-(3-methoxyphenyl)aniline Chemical compound COC1=CC=CC(C=2C=CC(N)=CC=2)=C1 OSWFIVFLDKOXQC-UHFFFAOYSA-N 0.000 claims description 3
- KMTRUDSVKNLOMY-UHFFFAOYSA-N Ethylene carbonate Chemical compound O=C1OCCO1 KMTRUDSVKNLOMY-UHFFFAOYSA-N 0.000 claims description 3
- FQYUMYWMJTYZTK-UHFFFAOYSA-N Phenyl glycidyl ether Chemical compound C1OC1COC1=CC=CC=C1 FQYUMYWMJTYZTK-UHFFFAOYSA-N 0.000 claims description 3
- HCHKCACWOHOZIP-UHFFFAOYSA-N Zinc Chemical compound [Zn] HCHKCACWOHOZIP-UHFFFAOYSA-N 0.000 claims description 3
- GKXVJHDEWHKBFH-UHFFFAOYSA-N [2-(aminomethyl)phenyl]methanamine Chemical compound NCC1=CC=CC=C1CN GKXVJHDEWHKBFH-UHFFFAOYSA-N 0.000 claims description 3
- 235000019253 formic acid Nutrition 0.000 claims description 3
- 239000004310 lactic acid Substances 0.000 claims description 3
- 235000014655 lactic acid Nutrition 0.000 claims description 3
- 229940098779 methanesulfonic acid Drugs 0.000 claims description 3
- BDERNNFJNOPAEC-UHFFFAOYSA-N propan-1-ol Chemical compound CCCO BDERNNFJNOPAEC-UHFFFAOYSA-N 0.000 claims description 3
- YODZTKMDCQEPHD-UHFFFAOYSA-N thiodiglycol Chemical compound OCCSCCO YODZTKMDCQEPHD-UHFFFAOYSA-N 0.000 claims description 3
- 229910052725 zinc Inorganic materials 0.000 claims description 3
- 239000011701 zinc Substances 0.000 claims description 3
- WAPNOHKVXSQRPX-SSDOTTSWSA-N (R)-1-phenylethanol Chemical compound C[C@@H](O)C1=CC=CC=C1 WAPNOHKVXSQRPX-SSDOTTSWSA-N 0.000 claims description 2
- BYAYBEOFCICGKF-UHFFFAOYSA-N 1-(2-ethylhexoxy)ethanol Chemical compound CCCCC(CC)COC(C)O BYAYBEOFCICGKF-UHFFFAOYSA-N 0.000 claims description 2
- DYCRDXOGOYSIIA-UHFFFAOYSA-N 1-hexoxyethanol Chemical compound CCCCCCOC(C)O DYCRDXOGOYSIIA-UHFFFAOYSA-N 0.000 claims description 2
- PTBDIHRZYDMNKB-UHFFFAOYSA-N 2,2-Bis(hydroxymethyl)propionic acid Chemical compound OCC(C)(CO)C(O)=O PTBDIHRZYDMNKB-UHFFFAOYSA-N 0.000 claims description 2
- BBBUAWSVILPJLL-UHFFFAOYSA-N 2-(2-ethylhexoxymethyl)oxirane Chemical compound CCCCC(CC)COCC1CO1 BBBUAWSVILPJLL-UHFFFAOYSA-N 0.000 claims description 2
- XNWFRZJHXBZDAG-UHFFFAOYSA-N 2-METHOXYETHANOL Chemical compound COCCO XNWFRZJHXBZDAG-UHFFFAOYSA-N 0.000 claims description 2
- FYYHWMGAXLPEAU-UHFFFAOYSA-N Magnesium Chemical compound [Mg] FYYHWMGAXLPEAU-UHFFFAOYSA-N 0.000 claims description 2
- ZOKXTWBITQBERF-UHFFFAOYSA-N Molybdenum Chemical compound [Mo] ZOKXTWBITQBERF-UHFFFAOYSA-N 0.000 claims description 2
- RTAQQCXQSZGOHL-UHFFFAOYSA-N Titanium Chemical compound [Ti] RTAQQCXQSZGOHL-UHFFFAOYSA-N 0.000 claims description 2
- XSQUKJJJFZCRTK-UHFFFAOYSA-N Urea Chemical compound NC(N)=O XSQUKJJJFZCRTK-UHFFFAOYSA-N 0.000 claims description 2
- QCWXUUIWCKQGHC-UHFFFAOYSA-N Zirconium Chemical compound [Zr] QCWXUUIWCKQGHC-UHFFFAOYSA-N 0.000 claims description 2
- 229910052787 antimony Inorganic materials 0.000 claims description 2
- WATWJIUSRGPENY-UHFFFAOYSA-N antimony atom Chemical compound [Sb] WATWJIUSRGPENY-UHFFFAOYSA-N 0.000 claims description 2
- 229910017052 cobalt Inorganic materials 0.000 claims description 2
- 239000010941 cobalt Substances 0.000 claims description 2
- GUTLYIVDDKVIGB-UHFFFAOYSA-N cobalt atom Chemical compound [Co] GUTLYIVDDKVIGB-UHFFFAOYSA-N 0.000 claims description 2
- HPXRVTGHNJAIIH-UHFFFAOYSA-N cyclohexanol Chemical compound OC1CCCCC1 HPXRVTGHNJAIIH-UHFFFAOYSA-N 0.000 claims description 2
- 229940028356 diethylene glycol monobutyl ether Drugs 0.000 claims description 2
- 229910052749 magnesium Inorganic materials 0.000 claims description 2
- 239000011777 magnesium Substances 0.000 claims description 2
- WPBNNNQJVZRUHP-UHFFFAOYSA-L manganese(2+);methyl n-[[2-(methoxycarbonylcarbamothioylamino)phenyl]carbamothioyl]carbamate;n-[2-(sulfidocarbothioylamino)ethyl]carbamodithioate Chemical compound [Mn+2].[S-]C(=S)NCCNC([S-])=S.COC(=O)NC(=S)NC1=CC=CC=C1NC(=S)NC(=O)OC WPBNNNQJVZRUHP-UHFFFAOYSA-L 0.000 claims description 2
- 229910052750 molybdenum Inorganic materials 0.000 claims description 2
- 239000011733 molybdenum Substances 0.000 claims description 2
- KPADFPAILITQBG-UHFFFAOYSA-N non-4-ene Chemical compound CCCCC=CCCC KPADFPAILITQBG-UHFFFAOYSA-N 0.000 claims description 2
- FZBIESPTFIVNEJ-UHFFFAOYSA-N oxiran-2-ylmethyl decanoate Chemical compound CCCCCCCCCC(=O)OCC1CO1 FZBIESPTFIVNEJ-UHFFFAOYSA-N 0.000 claims description 2
- JCGNDDUYTRNOFT-UHFFFAOYSA-N oxolane-2,4-dione Chemical compound O=C1COC(=O)C1 JCGNDDUYTRNOFT-UHFFFAOYSA-N 0.000 claims description 2
- 125000003367 polycyclic group Chemical group 0.000 claims description 2
- 229910052719 titanium Inorganic materials 0.000 claims description 2
- 239000010936 titanium Substances 0.000 claims description 2
- WFKWXMTUELFFGS-UHFFFAOYSA-N tungsten Chemical compound [W] WFKWXMTUELFFGS-UHFFFAOYSA-N 0.000 claims description 2
- 229910052721 tungsten Inorganic materials 0.000 claims description 2
- 239000010937 tungsten Substances 0.000 claims description 2
- 229910052726 zirconium Inorganic materials 0.000 claims description 2
- 229910044991 metal oxide Inorganic materials 0.000 claims 3
- 150000004706 metal oxides Chemical class 0.000 claims 2
- 239000002954 polymerization reaction product Substances 0.000 claims 2
- KXDHJXZQYSOELW-UHFFFAOYSA-M Carbamate Chemical compound NC([O-])=O KXDHJXZQYSOELW-UHFFFAOYSA-M 0.000 claims 1
- 239000004202 carbamide Substances 0.000 claims 1
- 125000004356 hydroxy functional group Chemical group O* 0.000 claims 1
- 229910052746 lanthanum Inorganic materials 0.000 claims 1
- FZLIPJUXYLNCLC-UHFFFAOYSA-N lanthanum atom Chemical compound [La] FZLIPJUXYLNCLC-UHFFFAOYSA-N 0.000 claims 1
- WVDDGKGOMKODPV-ZQBYOMGUSA-N phenyl(114C)methanol Chemical compound O[14CH2]C1=CC=CC=C1 WVDDGKGOMKODPV-ZQBYOMGUSA-N 0.000 claims 1
- 239000000126 substance Substances 0.000 description 59
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 48
- 125000002091 cationic group Chemical group 0.000 description 45
- 238000000576 coating method Methods 0.000 description 41
- 239000006185 dispersion Substances 0.000 description 35
- 229920000728 polyester Polymers 0.000 description 33
- 239000011248 coating agent Substances 0.000 description 31
- 239000003973 paint Substances 0.000 description 31
- 229920000647 polyepoxide Polymers 0.000 description 31
- 239000000945 filler Substances 0.000 description 30
- 125000002887 hydroxy group Chemical group [H]O* 0.000 description 28
- 239000000049 pigment Substances 0.000 description 28
- 239000000463 material Substances 0.000 description 27
- 238000000034 method Methods 0.000 description 27
- 229920005862 polyol Polymers 0.000 description 25
- 238000013019 agitation Methods 0.000 description 21
- 239000011541 reaction mixture Substances 0.000 description 19
- 239000002904 solvent Substances 0.000 description 19
- CSCPPACGZOOCGX-UHFFFAOYSA-N Acetone Chemical compound CC(C)=O CSCPPACGZOOCGX-UHFFFAOYSA-N 0.000 description 18
- 239000003086 colorant Substances 0.000 description 18
- 150000003077 polyols Chemical class 0.000 description 18
- 239000008367 deionised water Substances 0.000 description 16
- 229910021641 deionized water Inorganic materials 0.000 description 16
- LYCAIKOWRPUZTN-UHFFFAOYSA-N Ethylene glycol Chemical compound OCCO LYCAIKOWRPUZTN-UHFFFAOYSA-N 0.000 description 15
- IISBACLAFKSPIT-UHFFFAOYSA-N bisphenol A Chemical compound C=1C=C(O)C=CC=1C(C)(C)C1=CC=C(O)C=C1 IISBACLAFKSPIT-UHFFFAOYSA-N 0.000 description 15
- 239000005056 polyisocyanate Substances 0.000 description 15
- 229920001228 polyisocyanate Polymers 0.000 description 15
- 239000002002 slurry Substances 0.000 description 15
- 239000003981 vehicle Substances 0.000 description 14
- DNIAPMSPPWPWGF-UHFFFAOYSA-N Propylene glycol Chemical compound CC(O)CO DNIAPMSPPWPWGF-UHFFFAOYSA-N 0.000 description 13
- 239000002105 nanoparticle Substances 0.000 description 13
- 229920000058 polyacrylate Polymers 0.000 description 13
- 239000000523 sample Substances 0.000 description 13
- 125000003277 amino group Chemical group 0.000 description 12
- 239000000243 solution Substances 0.000 description 12
- 150000008064 anhydrides Chemical class 0.000 description 11
- 238000003756 stirring Methods 0.000 description 11
- 239000012736 aqueous medium Substances 0.000 description 10
- 230000000694 effects Effects 0.000 description 10
- NTIZESTWPVYFNL-UHFFFAOYSA-N Methyl isobutyl ketone Chemical compound CC(C)CC(C)=O NTIZESTWPVYFNL-UHFFFAOYSA-N 0.000 description 9
- 239000004814 polyurethane Substances 0.000 description 9
- 229920002635 polyurethane Polymers 0.000 description 9
- 238000002360 preparation method Methods 0.000 description 9
- 125000001424 substituent group Chemical group 0.000 description 9
- KJTLSVCANCCWHF-UHFFFAOYSA-N Ruthenium Chemical compound [Ru] KJTLSVCANCCWHF-UHFFFAOYSA-N 0.000 description 8
- 150000007513 acids Chemical class 0.000 description 8
- 150000001298 alcohols Chemical class 0.000 description 8
- 150000002009 diols Chemical class 0.000 description 8
- 150000002118 epoxides Chemical class 0.000 description 8
- 239000000047 product Substances 0.000 description 8
- 229910052707 ruthenium Inorganic materials 0.000 description 8
- 238000007792 addition Methods 0.000 description 7
- 229910052799 carbon Inorganic materials 0.000 description 7
- MTHSVFCYNBDYFN-UHFFFAOYSA-N diethylene glycol Chemical compound OCCOCCO MTHSVFCYNBDYFN-UHFFFAOYSA-N 0.000 description 7
- 150000002576 ketones Chemical class 0.000 description 7
- 238000003801 milling Methods 0.000 description 7
- 238000002156 mixing Methods 0.000 description 7
- ISWSIDIOOBJBQZ-UHFFFAOYSA-N phenol group Chemical group C1(=CC=CC=C1)O ISWSIDIOOBJBQZ-UHFFFAOYSA-N 0.000 description 7
- 150000003242 quaternary ammonium salts Chemical group 0.000 description 7
- IJGRMHOSHXDMSA-UHFFFAOYSA-N Atomic nitrogen Chemical compound N#N IJGRMHOSHXDMSA-UHFFFAOYSA-N 0.000 description 6
- UQSXHKLRYXJYBZ-UHFFFAOYSA-N Iron oxide Chemical compound [Fe]=O UQSXHKLRYXJYBZ-UHFFFAOYSA-N 0.000 description 6
- YXFVVABEGXRONW-UHFFFAOYSA-N Toluene Chemical compound CC1=CC=CC=C1 YXFVVABEGXRONW-UHFFFAOYSA-N 0.000 description 6
- 239000002131 composite material Substances 0.000 description 6
- 239000000178 monomer Substances 0.000 description 6
- 238000006116 polymerization reaction Methods 0.000 description 6
- 238000000108 ultra-filtration Methods 0.000 description 6
- NIXOWILDQLNWCW-UHFFFAOYSA-N 2-Propenoic acid Natural products OC(=O)C=C NIXOWILDQLNWCW-UHFFFAOYSA-N 0.000 description 5
- IAYPIBMASNFSPL-UHFFFAOYSA-N Ethylene oxide Chemical compound C1CO1 IAYPIBMASNFSPL-UHFFFAOYSA-N 0.000 description 5
- PEDCQBHIVMGVHV-UHFFFAOYSA-N Glycerine Chemical compound OCC(O)CO PEDCQBHIVMGVHV-UHFFFAOYSA-N 0.000 description 5
- 229910000831 Steel Inorganic materials 0.000 description 5
- 125000004429 atom Chemical group 0.000 description 5
- 239000000975 dye Substances 0.000 description 5
- 238000010438 heat treatment Methods 0.000 description 5
- 229910052757 nitrogen Inorganic materials 0.000 description 5
- 239000002245 particle Substances 0.000 description 5
- 235000013772 propylene glycol Nutrition 0.000 description 5
- 239000010959 steel Substances 0.000 description 5
- SRPWOOOHEPICQU-UHFFFAOYSA-N trimellitic anhydride Chemical compound OC(=O)C1=CC=C2C(=O)OC(=O)C2=C1 SRPWOOOHEPICQU-UHFFFAOYSA-N 0.000 description 5
- SMZOUWXMTYCWNB-UHFFFAOYSA-N 2-(2-methoxy-5-methylphenyl)ethanamine Chemical compound COC1=CC=C(C)C=C1CCN SMZOUWXMTYCWNB-UHFFFAOYSA-N 0.000 description 4
- HZAXFHJVJLSVMW-UHFFFAOYSA-N 2-Aminoethan-1-ol Chemical compound NCCO HZAXFHJVJLSVMW-UHFFFAOYSA-N 0.000 description 4
- NIXOWILDQLNWCW-UHFFFAOYSA-M Acrylate Chemical compound [O-]C(=O)C=C NIXOWILDQLNWCW-UHFFFAOYSA-M 0.000 description 4
- VZCYOOQTPOCHFL-OWOJBTEDSA-N Fumaric acid Chemical compound OC(=O)\C=C\C(O)=O VZCYOOQTPOCHFL-OWOJBTEDSA-N 0.000 description 4
- UIHCLUNTQKBZGK-UHFFFAOYSA-N Methyl isobutyl ketone Natural products CCC(C)C(C)=O UIHCLUNTQKBZGK-UHFFFAOYSA-N 0.000 description 4
- NBIIXXVUZAFLBC-UHFFFAOYSA-N Phosphoric acid Chemical compound OP(O)(O)=O NBIIXXVUZAFLBC-UHFFFAOYSA-N 0.000 description 4
- GOOHAUXETOMSMM-UHFFFAOYSA-N Propylene oxide Chemical compound CC1CO1 GOOHAUXETOMSMM-UHFFFAOYSA-N 0.000 description 4
- GWEVSGVZZGPLCZ-UHFFFAOYSA-N Titan oxide Chemical compound O=[Ti]=O GWEVSGVZZGPLCZ-UHFFFAOYSA-N 0.000 description 4
- 230000002378 acidificating effect Effects 0.000 description 4
- 125000001931 aliphatic group Chemical group 0.000 description 4
- MWPLVEDNUUSJAV-UHFFFAOYSA-N anthracene Chemical compound C1=CC=CC2=CC3=CC=CC=C3C=C21 MWPLVEDNUUSJAV-UHFFFAOYSA-N 0.000 description 4
- 230000015572 biosynthetic process Effects 0.000 description 4
- 125000003178 carboxy group Chemical group [H]OC(*)=O 0.000 description 4
- XXBDWLFCJWSEKW-UHFFFAOYSA-N dimethylbenzylamine Chemical compound CN(C)CC1=CC=CC=C1 XXBDWLFCJWSEKW-UHFFFAOYSA-N 0.000 description 4
- 150000002170 ethers Chemical class 0.000 description 4
- 239000002609 medium Substances 0.000 description 4
- 150000002739 metals Chemical class 0.000 description 4
- 238000006386 neutralization reaction Methods 0.000 description 4
- 239000000843 powder Substances 0.000 description 4
- CXMXRPHRNRROMY-UHFFFAOYSA-N sebacic acid Chemical compound OC(=O)CCCCCCCCC(O)=O CXMXRPHRNRROMY-UHFFFAOYSA-N 0.000 description 4
- RWSOTUBLDIXVET-UHFFFAOYSA-O sulfonium group Chemical group [SH3+] RWSOTUBLDIXVET-UHFFFAOYSA-O 0.000 description 4
- VZCYOOQTPOCHFL-UHFFFAOYSA-N trans-butenedioic acid Natural products OC(=O)C=CC(O)=O VZCYOOQTPOCHFL-UHFFFAOYSA-N 0.000 description 4
- PUPZLCDOIYMWBV-UHFFFAOYSA-N (+/-)-1,3-Butanediol Chemical compound CC(O)CCO PUPZLCDOIYMWBV-UHFFFAOYSA-N 0.000 description 3
- DEWLEGDTCGBNGU-UHFFFAOYSA-N 1,3-dichloropropan-2-ol Chemical compound ClCC(O)CCl DEWLEGDTCGBNGU-UHFFFAOYSA-N 0.000 description 3
- KUBDPQJOLOUJRM-UHFFFAOYSA-N 2-(chloromethyl)oxirane;4-[2-(4-hydroxyphenyl)propan-2-yl]phenol Chemical compound ClCC1CO1.C=1C=C(O)C=CC=1C(C)(C)C1=CC=C(O)C=C1 KUBDPQJOLOUJRM-UHFFFAOYSA-N 0.000 description 3
- UPMLOUAZCHDJJD-UHFFFAOYSA-N 4,4'-Diphenylmethane Diisocyanate Chemical compound C1=CC(N=C=O)=CC=C1CC1=CC=C(N=C=O)C=C1 UPMLOUAZCHDJJD-UHFFFAOYSA-N 0.000 description 3
- HRPVXLWXLXDGHG-UHFFFAOYSA-N Acrylamide Chemical compound NC(=O)C=C HRPVXLWXLXDGHG-UHFFFAOYSA-N 0.000 description 3
- OKTJSMMVPCPJKN-UHFFFAOYSA-N Carbon Chemical compound [C] OKTJSMMVPCPJKN-UHFFFAOYSA-N 0.000 description 3
- 229920000742 Cotton Polymers 0.000 description 3
- BRLQWZUYTZBJKN-UHFFFAOYSA-N Epichlorohydrin Chemical compound ClCC1CO1 BRLQWZUYTZBJKN-UHFFFAOYSA-N 0.000 description 3
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Classifications
-
- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09D—COATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS; FILLING PASTES; CHEMICAL PAINT OR INK REMOVERS; INKS; CORRECTING FLUIDS; WOODSTAINS; PASTES OR SOLIDS FOR COLOURING OR PRINTING; USE OF MATERIALS THEREFOR
- C09D5/00—Coating compositions, e.g. paints, varnishes or lacquers, characterised by their physical nature or the effects produced; Filling pastes
- C09D5/44—Coating compositions, e.g. paints, varnishes or lacquers, characterised by their physical nature or the effects produced; Filling pastes for electrophoretic applications
-
- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09D—COATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS; FILLING PASTES; CHEMICAL PAINT OR INK REMOVERS; INKS; CORRECTING FLUIDS; WOODSTAINS; PASTES OR SOLIDS FOR COLOURING OR PRINTING; USE OF MATERIALS THEREFOR
- C09D5/00—Coating compositions, e.g. paints, varnishes or lacquers, characterised by their physical nature or the effects produced; Filling pastes
- C09D5/44—Coating compositions, e.g. paints, varnishes or lacquers, characterised by their physical nature or the effects produced; Filling pastes for electrophoretic applications
- C09D5/4488—Cathodic paints
- C09D5/4496—Cathodic paints characterised by the nature of the curing agents
-
- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09D—COATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS; FILLING PASTES; CHEMICAL PAINT OR INK REMOVERS; INKS; CORRECTING FLUIDS; WOODSTAINS; PASTES OR SOLIDS FOR COLOURING OR PRINTING; USE OF MATERIALS THEREFOR
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Description
本發明係針對一種包含環胍之可電沈積塗料組合物。The present invention is directed to an electrodepositable coating composition comprising a cyclic oxime.
傳統上使用二烷基錫氧化物作為用於電沈積塗料之固化觸媒。然而,二烷基錫氧化物由於環境問題在許多國家經受眾多管理限制。因此,鉍已以增加之頻率用作用於電沈積塗料之固化觸媒替代二烷基錫氧化物。然而,存在許多與使用鉍作為固化觸媒相關之缺點。舉例而言,當與二烷基錫氧化物比較時,鉍常常為對於各種電沈積組合物而言有效性欠佳之觸媒。此外,將來可能存在與使用鉍作為固化觸媒相關之成本及有效性問題。因此,存在對適用於電沈積塗料之替代觸媒之需要。此外,亦存在對大體上不含錫之電沈積塗料之需要。Dialkyltin oxides have traditionally been used as curing catalysts for electrodeposition coatings. However, dialkyl tin oxides have experienced numerous regulatory constraints in many countries due to environmental concerns. Therefore, bismuth has been used as a curing catalyst for electrodeposition coatings to replace dialkyltin oxides at an increased frequency. However, there are many disadvantages associated with the use of ruthenium as a curing catalyst. For example, ruthenium is often a less effective catalyst for various electrodeposited compositions when compared to dialkyl tin oxides. In addition, there may be cost and effectiveness issues associated with the use of tantalum as a curing catalyst in the future. Therefore, there is a need for an alternative catalyst suitable for electrodeposition coatings. In addition, there is a need for electrodeposited coatings that are substantially free of tin.
本發明係針對一種包含環胍之可電沈積塗料組合物。The present invention is directed to an electrodepositable coating composition comprising a cyclic oxime.
如本文中所使用,除非另外明確指定,否則諸如表示值、範圍、數量或百分比之彼等數字的所有數字可如同前面置有"約"字般加以理解,即使該術語並未明確出現亦然。此外,應注意,複數術語及/或短語涵蓋其單數等效體,且反之亦然。舉例而言,"一(種)"環胍、"一(種)"聚合物、"一(種)"交聯劑及任何其他組分係指該等組分之一或多者。As used herein, unless expressly stated otherwise, all numbers such as the <RTI ID=0.0> </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; . In addition, it should be noted that plural terms and/or phrases encompass the singular equivalents and vice versa. For example, "a", "a", "a", "a", "cross", and any other component mean one or more of such components.
當提及值之任何數值範圍時,該等範圍應理解為包括所述範圍最小值與最大值之間的每一個數字及/或分數。When reference is made to any numerical range of values, such ranges are to be understood to include each number and/or
如本文中所使用,術語"多元醇"或其變體廣泛地指具有每分子平均兩個或兩個以上羥基之物質。As used herein, the term "polyol" or variants thereof broadly refers to a substance having an average of two or more hydroxyl groups per molecule.
如本文中所使用,術語"聚合物"廣泛地指預聚物、寡聚物及均聚物與共聚物。應注意,詞頭"聚"係指兩個或兩個以上。As used herein, the term "polymer" refers broadly to prepolymers, oligomers, and homopolymers and copolymers. It should be noted that the prefix "poly" refers to two or more.
如上所述,本發明係針對一種包含環胍之可電沈積塗料組合物。應瞭解,"胍"係指具有以下通用結構之化合物、部分及/或殘基:
應瞭解,在一些實施例中,碳原子與結構(I)中所示之氮原子之間的雙鍵可位於碳原子與結構(I)之另一氮原子之 間。因此,結構(I)之各取代基可連接於不同氮,此視雙鍵位於結構內部之何處而定。It will be appreciated that in some embodiments, the double bond between the carbon atom and the nitrogen atom shown in structure (I) may be located between the carbon atom and another nitrogen atom of structure (I). between. Thus, each substituent of structure (I) can be attached to a different nitrogen depending on where the double bond is located inside the structure.
在某些實施例中,環胍包含結構(I)之胍,其中結構(I)之兩個或兩個以上R基團一起形成一或多個環。換言之,在一些實施例中,環胍包含1個環。舉例而言,環胍可為如下文結構(II)及/或(III)中所示之單環胍(1個環),或環胍可為如下文結構(IV)及(V)中所示之多環胍(2個環)。In certain embodiments, the cyclic oxime comprises a structure (I) wherein two or more R groups of structure (I) together form one or more rings. In other words, in some embodiments, the ring contains 1 ring. For example, the cyclic oxime may be a monocyclic fluorene (1 ring) as shown in the following structures (II) and/or (III), or the ring enthalpy may be as described in the structures (IV) and (V) below. Multiple loops 2 rings).
結構(II)及/或(III)之各取代基R1-R7可包含氫、(環)烷基、芳基、芳族、有機金屬、聚合結構,或可一起形成環烷基、芳基或芳族結構,且其中R1-R7可相同或不同的。同樣地,結構(IV)及(V)之各取代基R1-R9可為氫、烷基、芳基、芳族、有機金屬、聚合結構,或可一起形成環烷基、芳基或芳族結構,且其中R1-R9可相同或不同的。此外,在結構(II)及/或(III)之一些實施例中,R1-R7之某些組合可為同一環結構之部分。舉例而言,結構(II)之R1及R7可形成單環結構之部分。此外,在一些實施例中,應瞭解,可選擇取代基(結構(II)及/或(III)之R1-R7以及結構(IV)及/或(V)之R1-R9)之任何組合,只要取代基不大體上干擾環胍之催化活性即可。The substituents R1-R7 of the structures (II) and/or (III) may comprise hydrogen, (cyclo)alkyl, aryl, aromatic, organometallic, polymeric structures, or may together form a cycloalkyl, aryl or An aromatic structure, and wherein R1-R7 may be the same or different. Similarly, the substituents R1-R9 of structures (IV) and (V) may be hydrogen, alkyl, aryl, aromatic, organometallic, polymeric structures, or may together form a cycloalkyl, aryl or aromatic group. Structure, and wherein R1-R9 may be the same or different. Furthermore, in some embodiments of structures (II) and/or (III), certain combinations of R1-R7 may be part of the same ring structure. For example, R1 and R7 of structure (II) may form part of a single ring structure. Furthermore, in some embodiments, it will be appreciated that any combination of substituents (R1-R7 of structure (II) and/or (III) and R1-R9 of structure (IV) and/or (V) may be selected, As long as the substituent does not substantially interfere with the catalytic activity of the cyclic oxime.
在某些實施例中,環胍中之各環係由5個以上成員構成。舉例而言,環胍可為5員環、6員環或7員環。如本文中所使用,術語"成員"係指位於環結構中之原子。因此,5員環將在環結構中具有5個原子(在結構(II)-(V)中,"n"及/或"m"=1),6員環將在環結構中具有6個原子(在結構(II)-(V)中,"n"及/或"m"=2),且7員環將在環結構中具有7個原子(在結構(II)-(V)中,"n"及/或"m"=3)。應瞭解,若環胍係由2個以上環構成(例如結構(IV)及(V)),則環胍之各環中之成員數量可為相同或不同的。舉例而言,一個環可為5員環,而另一個環可為6員環。若環胍係由3個以上環構成,則除先前句子中所提及之組合外,環胍之第一個環中之成員數量可不同於環胍之任何其他環中之成員數量。In certain embodiments, each of the loops in the loop is composed of more than five members. For example, the ring can be a 5-member ring, a 6-member ring, or a 7-member ring. As used herein, the term "member" refers to an atom located in a ring structure. Thus, a 5-membered ring will have 5 atoms in the ring structure (in structure (II)-(V), "n" and / or "m" = 1), 6-membered ring will have 6 in the ring structure Atom (in structure (II)-(V), "n" and / or "m" = 2), and the 7-membered ring will have 7 atoms in the ring structure (in structure (II)-(V) , "n" and / or "m" = 3). It should be understood that if the ring system consists of more than two rings (for example, structures (IV) and (V)), the number of members in each ring of the ring may be the same or different. For example, one ring can be a 5-member ring and the other ring can be a 6-member ring. If the ring system consists of more than three rings, the number of members in the first ring of the ring may be different from the number of members in any other ring of the ring, except for the combinations mentioned in the previous sentence.
亦應瞭解,在環胍之某些實施例中,結構(II)-(V)之氮原子可另外具有連接於其之額外原子。此外,在一些實施例中,環胍可經取代或未經取代。舉例而言,如本文中連同環胍一起所使用,"經取代"在某些實施例中係指如下環胍,其中結構(II)及/或(III)之R5、R6及/或R7及/或結構(IV)及/或(V)之R9不為氫。如本文中連同環胍一起所使用,"未經取代"在某些實施例中係指如下環胍,其中結構(II)及/或(III)之R1-R7及/或結構(IV)及/或(V)之R1-R9為氫。在一些實施例中,經取代環胍為1,5,7-三氮雜雙環[4.4.0]癸-5-烯。It will also be appreciated that in certain embodiments of the ring, the nitrogen atoms of structures (II)-(V) may additionally have additional atoms attached thereto. Further, in some embodiments, the cyclic oxime may be substituted or unsubstituted. For example, as used herein in connection with a ring, "substituted", in certain embodiments, refers to a ring, wherein R5, R6, and/or R7 of structure (II) and/or (III) / or R9 of structure (IV) and / or (V) is not hydrogen. As used herein, in connection with a ring, "unsubstituted", in certain embodiments, refers to a ring, wherein R1-R7 and/or structure (IV) of structure (II) and/or (III) / or (V) R1-R9 is hydrogen. In some embodiments, the substituted ring oxime is 1,5,7-triazabicyclo[4.4.0]non-5-ene.
已驚人地發現,環胍自身為用於可電沈積塗料組合物之觸媒(例如,固化觸媒)。因此,將環胍引入可電沈積塗料組合物中可減少及/或消除諸如錫及/或鉍之金屬觸媒在可電沈積塗料組合物中之使用。It has been surprisingly found that the cyclic oxime itself is a catalyst (e.g., a curing catalyst) for use in an electrodepositable coating composition. Thus, the introduction of a cyclic ruthenium into an electrodepositable coating composition reduces and/or eliminates the use of metal catalysts such as tin and/or antimony in electrodepositable coating compositions.
在一些實施例中,本發明之環胍係與可添加至可電沈積塗料組合物中之金屬(諸如金屬離子)組合使用。可與環胍組合使用之金屬包括(但不限於)鉍、錫、鋅、鋯、鈦、錳、鎢、釔、鉬、鑭、鈷、鈰、鎂或其組合。應注意,先前句子中所述之金屬之氧化物及/或鹽以及包含該等金屬之一之有機官能化物質亦可用於本發明。此外,應瞭解,一些金屬物質自身為觸媒且因此充當環胍之輔觸媒。因此,可電沈積塗料組合物中之金屬觸媒之量可藉由將環胍與金屬組合使用而減少。In some embodiments, the cyclic lanthanide of the present invention is used in combination with a metal (such as a metal ion) that can be added to an electrodepositable coating composition. Metals that can be used in combination with the ring ruthenium include, but are not limited to, ruthenium, tin, zinc, zirconium, titanium, manganese, tungsten, ruthenium, molybdenum, niobium, cobalt, ruthenium, magnesium, or combinations thereof. It should be noted that the oxides and/or salts of the metals described in the previous sentences and the organofunctional materials comprising one of the metals may also be used in the present invention. In addition, it should be understood that some metallic materials are themselves catalysts and thus act as secondary catalysts for the ring. Thus, the amount of metal catalyst in the electrodepositable coating composition can be reduced by using the ring ruthenium in combination with the metal.
在一些實施例中,以可電沈積塗料組合物之樹脂固體之 總重量計,可電沈積塗料組合物包含0.01重量%或0.2重量%之環胍。在其他實施例中,以可電沈積塗料組合物之樹脂固體之總重量計,可電沈積塗料組合物包含7重量%或4重量%或2重量%之環胍。在某些實施例中,可電沈積塗料組合物中所存在之環胍之量可在先前句子中所述之值(包括所述之值)之任何組合之間的範圍內變化。舉例而言,在某些實施例中,以可電沈積塗料組合物之樹脂固體之總重量計,可電沈積塗料組合物包含0.6重量%至2.0重量%之環胍。In some embodiments, the electrodepositable coating composition comprises, based on the total weight of the resin solids of the electrodepositable coating composition 0.01% by weight or 0.2% by weight of ring oxime. In other embodiments, the electrodepositable coating composition comprises, based on the total weight of the resin solids of the electrodepositable coating composition 7 wt% or 4% by weight or 2% by weight of the ring 胍. In certain embodiments, the amount of cyclic oxime present in the electrodepositable coating composition can vary over a range between any combination of values (including stated values) recited in the previous sentence. For example, in certain embodiments, the electrodepositable coating composition comprises from 0.6% to 2.0% by weight, based on the total weight of the resin solids of the electrodepositable coating composition.
如下文更詳細討論,先前段落中所述之環胍可使用各種方式併入可電沈積塗料組合物中。舉例而言,環胍可:(i)作為添加劑添加至可電沈積塗料組合物中;(ii)併入可電沈積塗料組合物之主要成膜聚合物中;(iii)併入可電沈積塗料組合物之研磨媒劑組分之水可分散性聚合物中;(iv)用於封端可電沈積塗料組合物中之固化劑,(v)併入凹坑控制添加劑之部分中,(vi)併入微凝膠中及/或(vii)以其任何組合來使用。As discussed in more detail below, the cyclic oxime described in the previous paragraph can be incorporated into the electrodepositable coating composition in a variety of ways. For example, the ring can be: (i) added as an additive to the electrodepositable coating composition; (ii) incorporated into the primary film-forming polymer of the electrodepositable coating composition; (iii) incorporated into the electrodepositable coating (iv) a curing agent for capping the electrodepositable coating composition, (iv) incorporated into a portion of the pit control additive, (iv) a water dispersible polymer of the grinding agent component of the coating composition; Vi) is incorporated into the microgel and/or (vii) is used in any combination thereof.
電沈積浴通常係以2種組分供應:(i)主要媒劑及(ii)研磨媒劑。第一組分(主要媒劑)可為通常包含樹脂摻合物之未著色樹脂進料。在某些實施例中,樹脂摻合物包含(a)具有反應性官能基之主要成膜聚合物(例如含活性氫、含離子鹽基團之樹脂)、(b)可與成膜聚合物上之官能基反應之固化劑及(c)任何額外之水可分散性未著色組分。廣泛種類之主要成膜聚合物為已知的且可用於本發明之電沈積浴中, 只要聚合物為"水可分散性的"即可。如本文中所使用,"水可分散性"將意謂適於溶解、分散及/或乳化於水中之物質。用於本發明中之主要成膜聚合物本質上為離子性的。因此,在一些實施例中,主要成膜聚合物為陽離子性的。換言之,主要成膜聚合物包含陽離子鹽基團,其通常係藉由用酸中和成膜聚合物上之官能基來製備,此使主要成膜聚合物能夠在陰極上電沈積。Electrodeposition baths are typically supplied in two components: (i) a primary vehicle and (ii) a milling vehicle. The first component (the primary vehicle) can be an uncolored resin feed that typically comprises a resin blend. In certain embodiments, the resin blend comprises (a) a primary film-forming polymer having a reactive functional group (eg, an active hydrogen-containing, ion-containing salt-containing resin), (b) a film-forming polymer. a functional group reactive curing agent and (c) any additional water dispersible uncolored component. A wide variety of major film-forming polymers are known and can be used in the electrodeposition baths of the present invention, As long as the polymer is "water dispersible". As used herein, "water dispersibility" shall mean a substance suitable for dissolving, dispersing and/or emulsifying in water. The primary film-forming polymers used in the present invention are ionic in nature. Thus, in some embodiments, the primary film forming polymer is cationic. In other words, the primary film-forming polymer comprises a cationic salt group, which is typically prepared by neutralizing the functional groups on the film-forming polymer with an acid, which enables the primary film-forming polymer to be electrodeposited on the cathode.
適用於陽離子電塗塗料組合物之主要成膜聚合物之實例包括(但不限於)源自聚環氧化物、丙烯酸、聚胺基甲酸酯及/或聚酯之陽離子聚合物、含羥基聚合物、含胺鹽基團之聚合物或其組合。應注意,在一些實施例中,主要成膜聚合物為先前句子中所列聚合物之共聚物。Examples of major film-forming polymers suitable for use in cationic electrocoat coating compositions include, but are not limited to, cationic polymers derived from polyepoxides, acrylics, polyurethanes, and/or polyesters, hydroxyl-containing polymerizations , a polymer containing an amine salt group, or a combination thereof. It should be noted that in some embodiments, the primary film forming polymer is a copolymer of the polymers listed in the previous sentence.
因此,在一些實施例中,主要成膜聚合物為源自聚環氧化物之陽離子聚合物(陽離子樹脂)。舉例而言,主要成膜聚合物可藉由使聚環氧化物與選自含醇羥基物質及含酚羥基物質之含多羥基物質一起反應來擴鏈或建立聚環氧化物之分子量而製備。如下文更詳細討論,反應產物可隨後與陽離子鹽基團形成劑反應以產生陽離子聚合物。Thus, in some embodiments, the primary film forming polymer is a cationic polymer derived from a polyepoxide (cationic resin). For example, a primary film-forming polymer can be prepared by reacting a polyepoxide with a polyhydroxyl-containing material selected from the group consisting of an alcohol-containing hydroxyl group and a phenolic hydroxyl group-containing material to extend the chain or establish the molecular weight of the polyepoxide. As discussed in more detail below, the reaction product can then be reacted with a cationic salt group forming agent to produce a cationic polymer.
在某些實施例中,鏈伸長聚環氧化物通常如下製備:使聚環氧化物與含多羥基物質一起"以純淨形式"反應或在惰性有機溶劑(諸如包括甲基異丁基酮及甲基戊基酮之酮、諸如甲苯及二甲苯之芳族物及諸如二乙二醇之二甲醚之二醇醚)存在下反應。反應通常在80℃至160℃之溫度下進行30至180分鐘直至獲得含環氧基之樹脂性反應產物。In certain embodiments, the chain-extended polyepoxides are typically prepared by reacting the polyepoxide with the polyhydroxy-containing material "in neat form" or in an inert organic solvent (such as including methyl isobutyl ketone and The reaction is carried out in the presence of a ketone of kepentyl ketone, an aromatic compound such as toluene and xylene, and a glycol ether such as dimethyl ether of diethylene glycol. The reaction is usually carried out at a temperature of from 80 ° C to 160 ° C for 30 to 180 minutes until an epoxy group-containing resinous reaction product is obtained.
在一些實施例中,反應物之當量比(亦即,環氧化物:含多羥基物質)在1.00:0.50至1.00:2.00之範圍內變化。In some embodiments, the equivalent ratio of reactants (ie, epoxide: polyhydroxy-containing material) varies from 1.00:0.50 to 1.00:2.00.
在某些實施例中,聚環氧化物通常具有至少2個1,2-環氧基。環氧化合物可為飽和或不飽和、環狀或非環狀、脂族、脂環族、芳族或雜環的。此外,環氧化合物可含有諸如鹵素、羥基及醚基之取代基。In certain embodiments, the polyepoxide typically has at least 2 1,2-epoxy groups. The epoxy compound may be saturated or unsaturated, cyclic or acyclic, aliphatic, alicyclic, aromatic or heterocyclic. Further, the epoxy compound may contain a substituent such as a halogen, a hydroxyl group, and an ether group.
聚環氧化物之實例為具有大於1及/或2之1,2-環氧基當量之彼等聚環氧化物;亦即,具有每分子平均二個環氧基團之聚環氧化物。合適聚環氧化物包括諸如環狀多元醇之多元醇之聚縮水甘油基醚及諸如雙酚A之多元酚之聚縮水甘油基醚。該等聚環氧化物可藉由用諸如表氯醇或二氯醇(dichlorohydrin)之表鹵醇或二鹵醇在鹼存在下醚化多元酚而產生。除多元酚外,其他環狀多元醇可用於製備環狀多元醇之聚縮水甘油基醚。其他環狀多元醇之實例包括脂環族多元醇,尤其為環脂族多元醇,諸如氫化雙酚A、1,2-環己烷二醇及1,2-雙(羥甲基)環己烷。Examples of polyepoxides are those polyepoxides having a 1,2-epoxy equivalent weight greater than 1 and/or 2; that is, polyepoxides having an average of two epoxy groups per molecule. Suitable polyepoxides include polyglycidyl ethers of polyols such as cyclic polyols and polyglycidyl ethers of polyhydric phenols such as bisphenol A. The polyepoxides can be produced by etherifying a polyhydric phenol with an epihalohydrin such as epichlorohydrin or dichlorohydrin or a dihalohydrin in the presence of a base. In addition to polyhydric phenols, other cyclic polyols can be used to prepare polyglycidyl ethers of cyclic polyols. Examples of other cyclic polyols include alicyclic polyols, especially cycloaliphatic polyols such as hydrogenated bisphenol A, 1,2-cyclohexanediol, and 1,2-bis(hydroxymethyl)cyclohexane. alkyl.
在某些實施例中,聚環氧化物具有180之環氧當量重量。在一些實施例中,聚環氧化物具有2000之環氧當量重量。在其他實施例中,聚環氧化物具有在先前句子中所述之值(包括所述之值)之任何組合之間的範圍內變化之環氧當量重量。舉例而言,在某些實施例中,聚環氧化物具有在186至1200之範圍內變化之環氧當量重量。In certain embodiments, the polyepoxide has Epoxy equivalent weight of 180. In some embodiments, the polyepoxide has Epoxy equivalent weight of 2000. In other embodiments, the polyepoxide has an epoxy equivalent weight that varies over a range between any combination of values (including the recited values) recited in the previous sentence. For example, in certain embodiments, the polyepoxide has an epoxy equivalent weight that varies from 186 to 1200.
含環氧基丙烯酸聚合物亦可用於本發明。在某些實施例中,含環氧基丙烯酸聚合物具有750之環氧當量重量。在 其他實施例中,含環氧基丙烯酸聚合物具有2000之環氧當量重量。在一些實施例中,含環氧基丙烯酸聚合物具有在先前句子中所述之值(包括所述之值)之任何組合之間的範圍內變化之環氧當量重量。Epoxy-containing acrylic polymers can also be used in the present invention. In certain embodiments, the epoxy-containing acrylic polymer has Epoxy equivalent weight of 750. In other embodiments, the epoxy-containing acrylic polymer has Epoxy equivalent weight of 2000. In some embodiments, the epoxy-containing acrylic polymer has an epoxy equivalent weight that varies over a range between any combination of values (including the recited values) recited in the previous sentence.
用於擴鏈或增加聚環氧化物之分子量(亦即,經由羥基-環氧基反應)之含多羥基物質的實例包括含醇羥基物質及含酚羥基物質。含醇羥基物質之實例為諸如新戊二醇之簡單多元醇;諸如美國專利第4,148,772號中所述之彼等者之聚酯多元醇;諸如美國專利第4,468,307號中所述之彼等者之聚醚多元醇;及諸如美國專利第4,931,157號中所述之彼等者之胺基甲酸酯二醇。含酚羥基物質之實例為諸如雙酚A、間苯三酚、兒茶酚及間苯二酚之多元酚。亦可使用含醇羥基物質與含酚羥基物質之混合物。Examples of the polyhydric group-containing substance used for chain extension or increase of the molecular weight of the polyepoxide (i.e., via a hydroxy-epoxy group reaction) include an alcohol-containing hydroxy group-containing substance and a phenol-containing hydroxy group-containing substance. Examples of alcohol-containing hydroxy materials are simple polyols such as neopentyl glycol; polyester polyols such as those described in U.S. Patent No. 4,148,772; such as those described in U.S. Patent No. 4,468,307. Polyether polyols; and urethane diols such as those described in U.S. Patent No. 4,931,157. Examples of the phenolic hydroxyl group-containing substance are polyhydric phenols such as bisphenol A, phloroglucinol, catechol, and resorcinol. Mixtures of alcoholic hydroxyl containing materials and phenolic hydroxyl containing materials can also be used.
主要成膜聚合物可含有陽離子鹽基團,其可如下併入樹脂分子中:使如上所述製備之樹脂性反應產物進一步與陽離子鹽基團形成劑反應。"陽離子鹽基團形成劑"意謂可與環氧基反應且可在與環氧基反應之前、期間或之後經酸化以形成陽離子鹽基團之物質。合適物質之實例包括胺類,諸如一級或二級胺,其可在與環氧基反應之後被酸化以形成胺鹽基團;或三級胺,其可在與環氧基反應之前及在與環氧基反應之後被酸化以形成四級銨鹽基團。其他陽離子鹽基團形成劑之實例為可在與環氧基反應之前與酸混合且在與環氧基之後續反應之後形成三級鋶鹽基團的硫化物。The primary film-forming polymer may contain a cationic salt group which may be incorporated into the resin molecule by reacting the resinous reaction product prepared as described above with a cationic salt group forming agent. The "cationic salt group forming agent" means a substance which can react with an epoxy group and which can be acidified to form a cationic salt group before, during or after the reaction with the epoxy group. Examples of suitable materials include amines such as primary or secondary amines which may be acidified after reaction with an epoxy group to form an amine salt group; or a tertiary amine which may be reacted with and before the epoxy group The epoxy group is then acidified to form a quaternary ammonium salt group. Examples of other cationic salt group forming agents are sulfides which can be mixed with an acid before the reaction with the epoxy group and form a tertiary sulfonium salt group after the subsequent reaction with the epoxy group.
當將胺類用作陽離子鹽形成劑時,可使用單胺、含羥基 胺、多胺或其組合。When an amine is used as the cationic salt forming agent, a monoamine or a hydroxyl group can be used. An amine, a polyamine or a combination thereof.
三級胺及二級胺比一級胺更常用,此係因為一級胺相對於環氧基而言為多官能性的且具有使反應混合物膠凝之較大傾向。若使用多胺或一級胺,則其可以相對於聚環氧化物中之環氧官能度之實質化學計量過量來使用,以便防止膠凝化且過量胺可藉由真空汽提或其他技術在反應結束時自反應混合物移除。可將環氧化物添加至胺中以確保過量之胺。The tertiary amines and secondary amines are more commonly used than primary amines because the primary amines are polyfunctional with respect to the epoxy groups and have a greater tendency to gel the reaction mixture. If a polyamine or a primary amine is used, it can be used in substantial stoichiometric excess relative to the epoxy functionality in the polyepoxide to prevent gelation and excess amine can be reacted by vacuum stripping or other techniques. At the end, it was removed from the reaction mixture. An epoxide can be added to the amine to ensure excess amine.
含羥基胺之實例包括(但不限於)烷醇胺、二烷醇胺、烷基烷醇胺及芳烷基烷醇胺,其中在烷醇、烷基及芳基基團之各者中含有1至18個碳原子,諸如1至6個碳原子。特定實例包括乙醇胺、N-甲基乙醇胺、二乙醇胺、N-苯基乙醇胺、N,N-二甲基乙醇胺、N-甲基二乙醇胺、3-胺基丙基二乙醇胺及N-(2-羥乙基)-哌嗪。Examples of hydroxyl-containing amines include, but are not limited to, alkanolamines, dialkanolamines, alkylalkanolamines, and aralkylalkanolamines, which are contained in each of the alkanol, alkyl, and aryl groups. 1 to 18 carbon atoms, such as 1 to 6 carbon atoms. Specific examples include ethanolamine, N-methylethanolamine, diethanolamine, N-phenylethanolamine, N,N-dimethylethanolamine, N-methyldiethanolamine, 3-aminopropyldiethanolamine, and N-(2- Hydroxyethyl)-piperazine.
亦可使用不含有羥基之諸如單、二及三烷基胺及混合芳基-烷基胺之胺或經除羥基以外之基團取代且該等基團不會消極地影響胺與環氧化物之間的反應之胺。特定實例包括乙胺、甲基乙基胺、三乙胺、N-苄基二甲胺、二椰油胺(dicocoamine)、3-二甲胺基丙胺及N,N-二甲基環己胺。It is also possible to use an amine such as a mono-, di- and trialkylamine and a mixed aryl-alkylamine which does not contain a hydroxyl group or a group other than a hydroxyl group and these groups do not negatively affect the amine and the epoxide The amine between the reactions. Specific examples include ethylamine, methylethylamine, triethylamine, N-benzyldimethylamine, dicocoamine, 3-dimethylaminopropylamine, and N,N-dimethylcyclohexylamine. .
上述胺之混合物亦可用於本發明。Mixtures of the above amines can also be used in the present invention.
一級胺及/或二級胺與聚環氧化物之反應在胺與聚環氧化物之混合後發生。可將胺添加至聚環氧化物中或反之亦然。反應可以純淨形式進行或在諸如甲基異丁基酮、二甲苯或1-甲氧基-2-丙醇之合適溶劑存在下進行。反應通常為 放熱的且可需要冷卻。然而,可進行加熱至在50℃至150℃之範圍內變化之適當溫度以加速反應。The reaction of the primary amine and/or secondary amine with the polyepoxide occurs after mixing of the amine with the polyepoxide. The amine can be added to the polyepoxide or vice versa. The reaction can be carried out in pure form or in the presence of a suitable solvent such as methyl isobutyl ketone, xylene or 1-methoxy-2-propanol. The reaction is usually It is exothermic and may require cooling. However, heating to a suitable temperature ranging from 50 ° C to 150 ° C can be performed to accelerate the reaction.
藉由用酸至少部分中和使一級胺及/或二級胺與聚環氧化物之反應產物成為陽離子性及水可分散性的。合適酸包括有機酸及無機酸。合適有機酸之非限制性實例包括甲酸、乙酸、甲烷磺酸及乳酸。合適無機酸之非限制性實例包括磷酸及胺磺酸。"胺磺酸"意謂胺磺酸自身或其衍生物,諸如具有下式之彼等衍生物:
應注意,上述酸之混合物亦可用於本發明中。It should be noted that a mixture of the above acids can also be used in the present invention.
陽離子性可電沈積塗料組合物之中和程度隨所涉及之特定反應產物而變化。然而,應使用足夠之酸以使可電沈積塗料組合物分散於水中。通常,所用酸之量提供所有全部中和之至少20%。亦可使用超過100%全部中和所需之量的過量酸。舉例而言,在一些實施例中,用於中和可電沈積塗料組合物之酸之量以可電沈積塗料組合物中之總胺計為1%。在其他實施例中,用於中和可電沈積塗料組合物之酸之量以可電沈積塗料組合物中之總胺計為100%。在某些實施例中,用於中和可電沈積塗料組合物之酸之總量在先前句子中所述之值(包括所述之值)之任何組合之間的範圍內變化。舉例而言,用於中和可電沈積塗料組合物之酸 之總量可以可電沈積塗料組合物中之總胺計為20%、35%、50%、60%或80%。The degree of neutralization of the cationic electrodepositable coating composition will vary with the particular reaction product involved. However, sufficient acid should be used to disperse the electrodepositable coating composition in water. Typically, the amount of acid used provides at least 20% of all total neutralization. It is also possible to use more than 100% of the total amount of excess acid required for neutralization. For example, in some embodiments, the amount of acid used to neutralize the electrodepositable coating composition is based on the total amine in the electrodepositable coating composition. 1%. In other embodiments, the amount of acid used to neutralize the electrodepositable coating composition is based on the total amine in the electrodepositable coating composition. 100%. In certain embodiments, the total amount of acid used to neutralize the electrodepositable coating composition varies over a range between any combination of values (including stated values) recited in the previous sentence. For example, the total amount of acid used to neutralize the electrodepositable coating composition can be 20%, 35%, 50%, 60%, or 80% of the total amine in the electrodepositable coating composition.
在三級胺與聚環氧化物之反應中,三級胺可與中和酸預反應以形成胺鹽且隨後胺鹽與聚環氧化物反應以形成含四級鹽基團之樹脂。反應係藉由將胺鹽與聚環氧化物混合於水中來進行。通常,水係以按總反應混合物固體計在1.75重量%至20重量%範圍內變化之量存在。In the reaction of the tertiary amine with the polyepoxide, the tertiary amine can be pre-reacted with the neutralizing acid to form an amine salt and then the amine salt is reacted with the polyepoxide to form a resin containing a quaternary salt group. The reaction is carried out by mixing an amine salt with a polyepoxide in water. Typically, the water system is present in an amount ranging from 1.75 wt% to 20 wt%, based on the total reaction mixture solids.
在形成含四級銨鹽基團樹脂之過程中,反應溫度可自反應將進行時之最低溫度(通常為室溫或略微高於室溫)變化至100℃之最高溫度(在大氣壓力下)。在較高壓力下,可使用較高反應溫度。在一些實施例中,反應溫度在60℃至100℃之範圍內變化。可使用諸如位阻酯、醚或位阻酮之溶劑,但其使用並非為必需的。During the formation of the quaternary ammonium salt-containing resin, the reaction temperature may be changed from the lowest temperature at which the reaction proceeds (usually room temperature or slightly above room temperature) to the highest temperature of 100 ° C (at atmospheric pressure). . At higher pressures, higher reaction temperatures can be used. In some embodiments, the reaction temperature varies from 60 °C to 100 °C. A solvent such as a hindered ester, an ether or a hindered ketone may be used, but its use is not essential.
除上文揭示之一級胺、二級胺及三級胺外,與聚環氧化物反應之胺之一部分可為多胺之酮亞胺,諸如美國專利第4,104,147號第6行第23列至第7行第23列中所述。酮亞胺基團在使胺-環氧樹脂反應產物分散於水中後分解。在本發明之實施例中,存在於樹脂(a)中之活性氫之至少一部分構成源自含酮亞胺化合物與含環氧基物質(諸如上文所述之彼等者)之反應的一級胺基團。In addition to the one-stage amine, the secondary amine, and the tertiary amine disclosed above, a portion of the amine reactive with the polyepoxide can be a ketimine of a polyamine, such as, for example, U.S. Patent No. 4,104,147, line 6, column 23 to Line 7 is described in column 23. The ketimine group decomposes after dispersing the amine-epoxy reaction product in water. In an embodiment of the invention, at least a portion of the active hydrogen present in the resin (a) constitutes a level derived from the reaction of the ketimine-containing compound with an epoxy-containing material such as those described above. Amine group.
除含有胺鹽及四級銨鹽基團之樹脂外,含有三級鋶基團之陽離子聚合物亦可用於本發明之組合物中。該等樹脂之實例及其製備方法描述於美國專利第3,793,278號及第3,959,106號中。In addition to the resin containing an amine salt and a quaternary ammonium salt group, a cationic polymer containing a tertiary sulfonium group can also be used in the composition of the present invention. Examples of such resins and methods for their preparation are described in U.S. Patent Nos. 3,793,278 and 3,959,106.
合適含活性氫、含陽離子鹽基團之樹脂可包括丙烯酸或(甲基)丙烯酸之一或多種烷基酯視需要連同一或多種其他可聚合烯系不飽和單體之共聚物。丙烯酸或(甲基)丙烯酸之合適烷基酯包括(甲基)丙烯酸甲酯、(甲基)丙烯酸乙酯、(甲基)丙烯酸丁酯、丙烯酸乙酯、丙烯酸丁酯及丙烯酸2-乙基己酯。合適的其他可共聚合烯系不飽和單體包括諸如丙烯腈及(甲基)丙烯腈之腈類、諸如乙烯基氯及偏二氟乙烯之乙烯基及亞乙烯基鹵化物以及諸如乙酸乙烯酯之乙烯基酯。可使用酸官能及酸酐官能烯系不飽和單體,諸如丙烯酸、(甲基)丙烯酸或酸酐、衣康酸、順丁烯二酸或酸酐,或反丁烯二酸。包括丙烯醯胺、(甲基)丙烯醯胺及N-烷基經取代(甲基)丙烯醯胺之醯胺官能單體亦為適合的。可使用諸如苯乙烯及乙烯基甲苯之乙烯基芳族化合物,只要不需要高水平之聚合物之光降解抗性即可。Suitable active hydrogen-containing, cationic salt-containing resins may include one or more alkyl esters of acrylic acid or (meth)acrylic acid, optionally copolymerized with one or more other polymerizable ethylenically unsaturated monomers. Suitable alkyl esters of acrylic acid or (meth)acrylic acid include methyl (meth)acrylate, ethyl (meth)acrylate, butyl (meth)acrylate, ethyl acrylate, butyl acrylate and 2-ethyl acrylate. Hexyl ester. Suitable other copolymerizable ethylenically unsaturated monomers include nitriles such as acrylonitrile and (meth)acrylonitrile, vinyl and vinylidene halides such as vinyl chloride and vinylidene fluoride, and such as vinyl acetate. Vinyl ester. Acid functional and anhydride functional ethylenically unsaturated monomers such as acrylic acid, (meth)acrylic acid or anhydride, itaconic acid, maleic acid or anhydride, or fumaric acid can be used. Also suitable are guanamine functional monomers including acrylamide, (meth) acrylamide and N-alkyl substituted (meth) acrylamide. Vinyl aromatic compounds such as styrene and vinyl toluene may be used as long as the photodegradation resistance of a high level of polymer is not required.
諸如羥基及胺基之官能基可藉由使用諸如丙烯酸羥烷基酯及甲基丙烯酸羥烷基酯或丙烯酸胺基烷基酯及甲基丙烯酸胺基烷基酯之官能單體併入丙烯酸聚合物中。環氧化物官能基(用於轉化成陽離子鹽基團)可藉由使用諸如丙烯酸縮水甘油酯及甲基丙烯酸縮水甘油酯、(甲基)丙烯酸3,4-環氧基環己基甲酯、(甲基)丙烯酸2-(3,4-環氧基環己基)乙酯或烯丙基縮水甘油醚之官能單體併入丙烯酸聚合物中。或者,環氧化物官能基可藉由使丙烯酸聚合物上之羧基與諸如表氯醇或二氯醇之表鹵醇或二鹵醇反應而併入丙烯酸聚合物中。Functional groups such as hydroxyl groups and amine groups can be incorporated into the polymerization of acrylic acid by using functional monomers such as hydroxyalkyl acrylate and hydroxyalkyl methacrylate or aminoalkyl acrylate and aminoalkyl methacrylate. In. Epoxide functional groups (for conversion to cationic salt groups) can be obtained by using, for example, glycidyl acrylate and glycidyl methacrylate, 3,4-epoxycyclohexylmethyl (meth)acrylate, A functional monomer of 2-(3,4-epoxycyclohexyl)ethyl or methyl allyl glycidyl ether is incorporated into the acrylic polymer. Alternatively, the epoxide functional group can be incorporated into the acrylic polymer by reacting a carboxyl group on the acrylic polymer with an epihalohydrin or a dihalo alcohol such as epichlorohydrin or dichlorohydrin.
丙烯酸聚合物可藉由如此項技術中已知之傳統自由基引發聚合技術(諸如溶液或乳液聚合),使用包括有機過氧化物及偶氮型化合物之合適觸媒以及視需要之諸如α-甲基苯乙烯二聚物及三級十二硫醇之鏈轉移劑來製備。適於形成含活性氫陽離子聚合物且可用於本發明之可電沈積塗料組合物中之額外的丙烯酸聚合物包括美國專利第3,455,806號及第3,928,157號中所述之彼等樹脂。The acrylic polymer can be used by conventional free radical initiated polymerization techniques known in the art, such as solution or emulsion polymerization, using suitable catalysts including organic peroxides and azo-type compounds, and optionally, such as alpha-methyl. It is prepared by a chain transfer agent of styrene dimer and tertiary dodecyl mercaptan. Additional acrylic polymers suitable for forming active hydrogen-containing cationic polymers and useful in the electrodepositable coating compositions of the present invention include those described in U.S. Patent Nos. 3,455,806 and 3,928,157.
如上所述,主要成膜聚合物亦可源自聚胺基甲酸酯。在可使用之聚胺基甲酸酯之中有聚合多元醇類,其係藉由使聚酯多元醇或丙烯酸多元醇(諸如上述彼等者)與聚異氰酸酯反應以至於OH/NCO當量比大於1:1,以便使游離羥基存在於產物中來製備。亦可使用諸如下文所揭示適用於製備聚酯之彼等者之較小多元醇替代聚合多元醇或與聚合多元醇組合使用。As noted above, the primary film-forming polymer can also be derived from a polyurethane. Among the polyurethanes that can be used are polymeric polyols which are obtained by reacting a polyester polyol or an acrylic polyol (such as those described above) with a polyisocyanate such that the OH/NCO equivalent ratio is greater than Prepared by 1:1 so that free hydroxyl groups are present in the product. Smaller polyols such as those disclosed below for use in preparing the polyester may also be used in place of or in combination with the polymeric polyol.
適於形成含活性氫陽離子聚合物之聚胺基甲酸酯聚合物之額外實例包括藉由使聚醚多元醇及/或聚醚多胺與聚異氰酸酯反應而製備之聚胺基甲酸酯、聚脲及聚(胺基甲酸酯-脲)聚合物。該等聚胺基甲酸酯聚合物描述於美國專利第6,248,225號中。Additional examples of polyurethane acrylate polymers suitable for forming active hydrogen-containing cationic polymers include polyurethanes prepared by reacting polyether polyols and/or polyether polyamines with polyisocyanates, Polyurea and poly(urethane-urea) polymers. Such polyurethane polymers are described in U.S. Patent No. 6,248,225.
環氧化物官能基可藉由此項技術中熟知之方法併入聚胺基甲酸酯中。舉例而言,環氧化物基團可藉由使縮水甘油與游離異氰酸酯基反應而併入。The epoxide functional groups can be incorporated into the polyurethane by methods well known in the art. For example, an epoxide group can be incorporated by reacting glycidol with a free isocyanate group.
含鋶基團之聚胺基甲酸酯亦可藉由諸如硫代二甘醇及硫代二丙醇之羥基官能硫化物化合物之至少部分反應來製 得,該反應導致硫併入聚合物之主鏈中。含硫聚合物隨後與單官能環氧化合物在酸存在下反應,從而形成鋶基團。適當單官能環氧化合物包括環氧乙烷、環氧丙烷、縮水甘油、苯基縮水甘油醚及CARDURA E(可購自Resolution Performance Products)。The fluorenyl group-containing polyurethane can also be prepared by at least partial reaction of a hydroxy-functional sulfide compound such as thiodiglycol and thiodipropanol. This reaction results in the incorporation of sulfur into the backbone of the polymer. The sulfur-containing polymer is then reacted with a monofunctional epoxy compound in the presence of an acid to form a sulfonium group. Suitable monofunctional epoxy compounds include ethylene oxide, propylene oxide, glycidol, phenyl glycidyl ether, and CARDURA E (available from Resolution Performance Products).
除源自聚環氧化物或聚胺基甲酸酯外,主要成膜聚合物亦可源自聚酯。該等聚酯可以已知方式,藉由多元醇與聚羧酸之縮合來製備。合適多元醇包括(例如)乙二醇、丙二醇、丁二醇、1,6-己二醇、新戊二醇、二乙二醇、甘油、三羥甲基丙烷及異戊四醇。用於製備聚酯之合適聚羧酸之實例包括丁二酸、己二酸、壬二酸、癸二酸、順丁烯二酸、反丁烯二酸、鄰苯二甲酸、四氫鄰苯二甲酸、六氫鄰苯二甲酸及苯偏三酸。除上述聚羧酸外,可使用酸之官能性等效物,諸如該等酸之酸酐,或該等酸之低碳烷酯(諸如甲酯)。此外,羥酸及/或內酯(諸如己內酯及/或12-羥基硬脂酸)亦可用作聚酯之組分。In addition to polyepoxides or polyurethanes, the primary film-forming polymers can also be derived from polyesters. These polyesters can be prepared in a known manner by condensation of a polyol with a polycarboxylic acid. Suitable polyols include, for example, ethylene glycol, propylene glycol, butylene glycol, 1,6-hexanediol, neopentyl glycol, diethylene glycol, glycerin, trimethylolpropane, and pentaerythritol. Examples of suitable polycarboxylic acids for the preparation of polyesters include succinic acid, adipic acid, sebacic acid, sebacic acid, maleic acid, fumaric acid, phthalic acid, tetrahydroortylene Dicarboxylic acid, hexahydrophthalic acid and trimellitic acid. In addition to the above polycarboxylic acids, functional equivalents of acids such as anhydrides of such acids, or lower alkyl esters of such acids (such as methyl esters) can be used. In addition, hydroxy acids and/or lactones such as caprolactone and/or 12-hydroxystearic acid may also be used as a component of the polyester.
聚酯含有游離羥基(在製備聚酯期間,由使用過量多元醇及/或高碳多元醇產生)之一部分,其可用於固化反應。The polyester contains a portion of a free hydroxyl group (produced by the use of excess polyol and/or high carbon polyol during the preparation of the polyester) which can be used in the curing reaction.
環氧化物官能基可藉由使聚酯上之羧基與諸如表氯醇或二氯醇之表鹵醇或二鹵醇反應而併入聚酯中。或者,在一些實施例中,酸官能聚酯可藉由羧基與過量聚環氧化物之反應而併入環氧聚合物中。The epoxide functional group can be incorporated into the polyester by reacting a carboxyl group on the polyester with an epihalohydrin or a dihalo alcohol such as epichlorohydrin or dichlorohydrin. Alternatively, in some embodiments, the acid functional polyester can be incorporated into the epoxy polymer by reaction of a carboxyl group with an excess of polyepoxide.
如美國專利第3,959,106及4,715,898號中所述,鋶鹽基團可藉由上文所述類型之含環氧基聚合物與硫化物在酸存在 下之反應而引入。使用類似反應條件將鋶基團引入至所述聚酯主鏈上。The phosphonium salt group can be present in the acid by an epoxy group-containing polymer of the type described above and a sulfide as described in U.S. Patent Nos. 3,959,106 and 4,715,898. Introduced under the reaction. A hydrazine group is introduced onto the polyester backbone using similar reaction conditions.
在一些實施例中,主要成膜聚合物另外包含陽離子性胺鹽基團,其源自側位及/或末端胺基。"末端及/或側位"意謂一級胺基及/或二級胺基係作為取代基存在,其在聚合主鏈之側位或在末端位置,或者其為聚合物主鏈之側位及/或末端之基團之端基取代基。換言之,不需要陽離子性胺鹽基團所源自之胺基在聚合主鏈內。側位及/或末端胺基可具有以下結構(I)或(II):
(V)-NHR
及/或
如結合結構(V)及(VI)所使用,"烷基"意謂烷基及芳烷基、環狀或非環狀、直線或支鏈單價烴基。烷基可為未經取代的或經一或多個例如非碳、非氫原子(諸如一或多個氧、氮或硫原子)之雜原子取代。As used in connection with structures (V) and (VI), "alkyl" means alkyl and aralkyl, cyclic or acyclic, straight or branched chain monovalent hydrocarbon radicals. The alkyl group can be unsubstituted or substituted with one or more heteroatoms such as non-carbon, non-hydrogen atoms such as one or more oxygen, nitrogen or sulfur atoms.
由上文結構(V)及(VI)所示之側位及/或末端胺基可源自選自由氨、甲胺、二乙醇胺、二異丙醇胺、N-羥乙基乙二胺、二伸乙基三胺及其混合物組成之群之化合物。該等化合物之一或多者與上述聚合物(例如聚環氧化物聚合物)之一或多者反應,其中環氧基經由與多胺之反應開環,從而提供末端胺基及二級羥基。The pendant and/or terminal amine groups represented by the above structures (V) and (VI) may be derived from the group consisting of ammonia, methylamine, diethanolamine, diisopropanolamine, N-hydroxyethylethylenediamine, A compound of the group consisting of diethyltriamine and mixtures thereof. One or more of the compounds are reacted with one or more of the above polymers (e.g., polyepoxide polymers) wherein the epoxy groups are ring opened via reaction with the polyamine to provide terminal amine groups and secondary hydroxyl groups. .
在一些實施例中,末端胺基具有結構(VI),其中X及Y包含一級胺基(例如,胺基係源自二伸乙基三胺)。應瞭解,在該情況下,在與聚合物反應之前,一級胺基可(例如)藉由與諸如甲基異丁基酮之酮反應以形成二酮亞胺而封端。該等酮亞胺為描述於美國專利第4,104,147號第6行第23列至第7行第23列中所述之彼等酮亞胺。酮亞胺基團可在使胺-環氧化物反應產物分散於水中之後分解,從而提供游離一級胺基團作為固化反應位點。In some embodiments, the terminal amine group has the structure (VI) wherein X and Y comprise a primary amine group (eg, the amine group is derived from di-ethyltriamine). It will be appreciated that in this case, the primary amine group can be capped, for example, by reaction with a ketone such as methyl isobutyl ketone to form a diketimine prior to reaction with the polymer. The ketimine is the ketimine described in U.S. Patent No. 4,104,147, line 6, column 23 to line 7, column 23. The ketimine group can be decomposed after dispersing the amine-epoxide reaction product in water to provide a free primary amine group as a curing reaction site.
在某些實施例中,側位及/或末端胺基所源自之胺包含一級胺基及/或二級胺基以便使該等胺之活性氫可藉由與至少部分封端之脂族聚異氰酸酯固化劑反應而消耗,從而在固化反應期間形成脲基團或鍵聯。In certain embodiments, the amine from which the pendant and/or terminal amine groups are derived comprises a primary amine group and/or a secondary amine group such that the active hydrogen of the amine can be stabilized by at least partially blocked aliphatic The polyisocyanate curing agent is consumed by reaction to form urea groups or linkages during the curing reaction.
應瞭解,在一些實施例中,與主要成膜聚合物相關之活性氫包括任何活性氫,其可在如先前所討論足以固化可電沈積塗料組合物之溫度下(亦即,在處於或低於182.2℃(360℉)之溫度下)與異氰酸酯反應。活性氫通常係源自反應性羥基以及一級胺基及二級胺基,包括諸如羥基及一級胺基之混合基團。在本發明之一些實施例中,活性 氫之至少一部分係源自羥基,包含酚羥基。在一些實施例中,主要成膜聚合物具有每公克樹脂固體1毫當量之活性氫之活性氫含量。在其他實施例中,主要成膜聚合物具有每公克樹脂固體4毫當量之活性氫之活性氫含量。在某些實施例中,主要成膜聚合物具有在先前句子中所述之值(包括所述之值)之任何組合之間的範圍內變化之活性氫含量。舉例而言,在一些實施例中,主要成膜聚合物具有在每公克樹脂固體2至3毫當量之活性氫之範圍內變化的活性氫含量。It will be appreciated that in some embodiments, the active hydrogen associated with the primary film-forming polymer includes any active hydrogen which may be at a temperature sufficient to cure the electrodepositable coating composition as discussed previously (ie, at or below It is reacted with isocyanate at a temperature of 182.2 ° C (360 ° F). The active hydrogen is usually derived from a reactive hydroxyl group as well as a primary amine group and a secondary amine group, including mixed groups such as a hydroxyl group and a primary amine group. In some embodiments of the invention, at least a portion of the active hydrogen is derived from a hydroxyl group and comprises a phenolic hydroxyl group. In some embodiments, the primary film forming polymer has a resin solid per gram 1 milliequivalent of active hydrogen content of active hydrogen. In other embodiments, the primary film forming polymer has a resin solid per gram 4 milliequivalents of active hydrogen content of active hydrogen. In certain embodiments, the primary film-forming polymer has an active hydrogen content that varies over a range between any combination of values (including the values) recited in the previous sentence. For example, in some embodiments, the primary film-forming polymer has an active hydrogen content that varies from 2 to 3 milliequivalents of active hydrogen per gram of resin solids.
陽離子鹽基團形成之程度應當使得當樹脂與水性介質及其他成分混合時,可電沈積塗料組合物之穩定分散液可形成。"穩定分散液"意謂不會發生沈降或即使一些沈降發生亦可易於再分散之分散液。此外,分散液應具有足夠的陽離子性特性,以便使所分散之樹脂粒子可在浸入水性分散液中之陽極與陰極之間建立電位時電沈積於陰極上。The cationic salt groups are formed to such an extent that a stable dispersion of the electrodepositable coating composition can be formed when the resin is mixed with an aqueous medium and other ingredients. "Stabilized dispersion" means a dispersion which does not undergo settling or which is easily redispersible even if some sedimentation occurs. Further, the dispersion should have sufficient cationic characteristics so that the dispersed resin particles can be electrodeposited on the cathode when a potential is established between the anode and the cathode immersed in the aqueous dispersion.
在某些實施例中,本發明之可電沈積塗料組合物中之主要成膜聚合物包含每公克樹脂固體0.1毫當量之陽離子鹽基團。在其他實施例中,主要成膜聚合物包含每公克樹脂固體3.0毫當量之陽離子鹽基團。在一些實施例中,在主要成膜聚合物中,每公克樹脂固體之陽離子鹽基團之毫當量在先前句子中所述之值(包括所述之值)之任何組合之間的範圍內變化。舉例而言,在一些實施例中,可電沈積塗料組合物包含每公克樹脂固體0.1至0.7毫當量之陽離子鹽基團。In certain embodiments, the primary film-forming polymer in the electrodepositable coating composition of the present invention comprises per gram of resin solids 0.1 milliequivalent of a cationic salt group. In other embodiments, the primary film forming polymer comprises per gram of resin solids 3.0 milliequivalents of cationic salt groups. In some embodiments, in the primary film-forming polymer, the milliequivalents of cationic salt groups per gram of resin solids vary within a range between any combination of values (including stated values) recited in the previous sentence. . For example, in some embodiments, the electrodepositable coating composition comprises from 0.1 to 0.7 milliequivalents of cationic salt groups per gram of resin solids.
此外,在一些實施例中,主要成膜聚合物通常為非膠凝化的,其具有2000之數量平均分子量。在其他實施例中,主要成膜聚合物為非膠凝化的且具有15,000之數量平均分子量。在某些實施例中,主要成膜聚合物之平均分子量在先前句子中所述之值(包括所述之值)之任何組合之間的範圍內變化。舉例而言,在一些實施例中,主要成膜聚合物之平均分子量在5000至10,000之範圍內變化。如本文中所使用,"非膠凝化的"意謂大體上不含交聯之聚合物且在陽離子鹽基團形成之前樹脂在溶於合適溶劑中時具有可量測固有黏度。相反,具有本質上無限之分子量的膠凝樹脂將具有過高以致於不能量測之固有黏度。Moreover, in some embodiments, the primary film-forming polymer is typically non-gelatinized, which has The number average molecular weight of 2000. In other embodiments, the primary film-forming polymer is non-gelatinized and has A number average molecular weight of 15,000. In certain embodiments, the average molecular weight of the primary film-forming polymer varies over a range between any combination of values (including the stated values) recited in the previous sentence. For example, in some embodiments, the average molecular weight of the primary film forming polymer varies from 5,000 to 10,000. As used herein, "non-gelatinized" means substantially free of crosslinked polymer and has a measurable intrinsic viscosity when dissolved in a suitable solvent prior to formation of the cationic salt group. Conversely, a gelled resin having an intrinsically infinite molecular weight will have an intrinsic viscosity that is too high to be measured by energy.
在某些實施例中,主要成膜聚合物係以按存在於可電沈積塗料組合物中之總樹脂固體之重量計40重量%的量存在於可電沈積塗料組合物中。在其他實施例中,主要成膜聚合物係以按存在於可電沈積塗料組合物中之總樹脂固體之重量計95重量%的量存在於可電沈積塗料組合物中。在一些實施例中,主要成膜聚合物在可電沈積塗料組合物中之重量百分比在先前句子中所述之值(包括所述之值)之任何組合之間的範圍內變化。舉例而言,主要成膜聚合物係以按存在於可電沈積塗料組合物中之總樹脂固體之重量計在50重量%至75重量%之範圍內變化的量存在於可電沈積塗料組合物中。In certain embodiments, the primary film-forming polymer is based on the weight of total resin solids present in the electrodepositable coating composition. An amount of 40% by weight is present in the electrodepositable coating composition. In other embodiments, the primary film-forming polymer is based on the weight of total resin solids present in the electrodepositable coating composition. An amount of 95% by weight is present in the electrodepositable coating composition. In some embodiments, the weight percent of the primary film-forming polymer in the electrodepositable coating composition varies over any range between any combination of values (including stated values) recited in the previous sentence. For example, the primary film-forming polymer is present in the electrodepositable coating composition in an amount ranging from 50% to 75% by weight, based on the weight of the total resin solids present in the electrodepositable coating composition. in.
在一些實施例中,主要成膜聚合物可選自陽離子性丙烯酸聚合物,諸如美國專利第3,455,806號及第3,928,157號中 所述之彼等丙烯酸聚合物。在一些實施例中,主要成膜聚合物可選自美國專利第6,165,338號及第4,543,376號中所述之聚合物,該等專利係以引用之方式併入本文中。在某些實施例中,主要成膜聚合物可選自含羥基聚合物,包括(但不限於)以下物質之反應產物:(i)雙酚A及環氧乙烷;(ii)雙酚A及環氧丙烷;(iii)雙酚A及聚環氧乙烷及/或聚環氧丙烷二胺;及/或(iv)雙酚A及雙酚A二縮水甘油醚。在其他實施例中,主要成膜聚合物可為含胺鹽基團聚合物,包括(但不限於)聚環氧化物與一級胺或二級胺之酸溶解反應產物,諸如美國專利第3,663,389號;第3,984,299號;第3,947,338號;第3,947,339號;及第4,116,900號中所述之彼等聚合物。合適一級胺或二級胺包括(但不限於)甲基乙醇胺、二乙醇胺、二伸乙基三胺二酮亞胺、二乙胺、二甲胺、其他二烷基胺、胺基丙基二乙醇胺或其組合。通常,將此等含胺鹽基團聚合物與封端異氰酸酯固化劑組合使用。異氰酸酯可如上述美國專利第3,984,299號中所述被完全封端或異氰酸酯可諸如美國專利第3,947,338號中所述,經部分封端且與聚合物主鏈反應。又,如美國專利第4,134,866號及DE-OS第2,707,405號中所述之單組分組合物可用作成膜樹脂。In some embodiments, the primary film-forming polymer can be selected from the group consisting of cationic acrylic polymers, such as in U.S. Patent Nos. 3,455,806 and 3,928,157. Said acrylic polymers. In some embodiments, the primary film-forming polymer can be selected from the polymers described in U.S. Patent Nos. 6,165,338 and 4,543,376, each incorporated herein by reference. In certain embodiments, the primary film-forming polymer can be selected from hydroxyl-containing polymers including, but not limited to, reaction products of: (i) bisphenol A and ethylene oxide; (ii) bisphenol A And propylene oxide; (iii) bisphenol A and polyethylene oxide and/or polypropylene oxide diamine; and/or (iv) bisphenol A and bisphenol A diglycidyl ether. In other embodiments, the primary film-forming polymer can be an amine salt-containing polymer including, but not limited to, an acid-dissolved reaction product of a polyepoxide with a primary or secondary amine, such as U.S. Patent No. 3,663,389. ; 3,984,299; 3,947,338; 3,947,339; and their polymers as described in 4,116,900. Suitable primary or secondary amines include, but are not limited to, methylethanolamine, diethanolamine, di-ethyltriaminedioneimide, diethylamine, dimethylamine, other dialkylamines, aminopropyldiamines Ethanolamine or a combination thereof. Typically, these amine-containing salt group polymers are used in combination with a blocked isocyanate curing agent. The isocyanate can be fully blocked as described in the above-mentioned U.S. Patent No. 3,984,299 or the isocyanate can be partially blocked and reacted with the polymer backbone as described in U.S. Patent No. 3,947,338. Further, a one-component composition as described in U.S. Patent No. 4,134,866 and DE-OS No. 2,707,405 is useful as a film-forming resin.
除含胺鹽基團聚合物外,亦可使用含四級銨鹽基團聚合物。該等聚合物之實例為藉由使有機聚環氧化物與三級胺鹽反應所成形之彼等聚合物。該等聚合物描述於美國專利第3,962,165號、第3,975,346號及第4,001,101號中。其他 陽離子聚合物之實例為含三級鋶鹽基團聚合物及含四級鏻鹽基團聚合物,分別諸如美國專利第3,793,278號及第3,984,922號中所述之彼等聚合物。又,可使用諸如歐洲申請案第12463號中所述經由酯基轉移來固化之成膜聚合物。另外,可使用諸如美國專利第4,134,932號中所述自曼尼希鹼(Mannich base)製備之陽離子性組合物。In addition to the amine salt-containing polymer, a quaternary ammonium salt-containing polymer can also be used. Examples of such polymers are those polymers formed by reacting an organopolyepoxide with a tertiary amine salt. Such polymers are described in U.S. Patent Nos. 3,962,165, 3,975,346, and 4,001,101. other Examples of cationic polymers are polymers containing tertiary sulfonium salt groups and polymers containing quaternary phosphonium salt groups, such as those described in U.S. Patent Nos. 3,793,278 and 3,984,922, respectively. Further, a film-forming polymer which is cured by transesterification as described in European Application No. 12463 can be used. Additionally, cationic compositions prepared from Mannich bases as described in U.S. Patent No. 4,134,932 may be used.
如上所述,除(a)主要成膜聚合物外,樹脂摻合物另外包含(b)固化劑(交聯劑),其可與主要成膜聚合物上之反應性官能基(諸如活性氫基團)反應。可供本發明使用之固化劑包括(但不限於)胺基甲酸酯、異氰酸酯、酯或其組合。As noted above, in addition to (a) the primary film-forming polymer, the resin blend additionally comprises (b) a curing agent (crosslinking agent) which is reactive with a reactive functional group (such as active hydrogen) on the predominantly film-forming polymer. Group) reaction. Curing agents useful in the present invention include, but are not limited to, urethanes, isocyanates, esters, or combinations thereof.
應瞭解,胺基甲酸酯固化劑之非限制性實例包括(i)胺-碳酸酯反應及/或(ii)異氰酸酯-醇反應之產物。It should be understood that non-limiting examples of urethane curing agents include (i) an amine-carbonate reaction and/or (ii) an isocyanate-alcohol reaction product.
可用於形成胺基甲酸酯固化劑之合適環狀碳酸酯之非限制性實例包括(但不限於)碳酸丙二酯、碳酸乙二酯、碳酸丁二酯或其組合。可用於形成胺基甲酸酯之合適非環狀碳酸酯之非限制性實例包括(但不限於)碳酸二甲酯、碳酸二乙酯、碳酸甲基乙酯、碳酸二丙酯、碳酸甲基丙酯、碳酸二丁酯或其組合。在本發明之一些實施例中,非環狀碳酸酯包含碳酸二甲酯。可用於形成胺基甲酸酯之合適胺之非限制性實例包括(但不限於)二伸乙基三胺、二伸丙基三胺、雙伸己基三胺、異氟爾酮二胺、4'-雙胺基環己胺、伸二甲苯基二胺、N-羥乙基乙二胺、伸己基三胺、參胺基乙胺或其組合。在一些實施例中,固化劑為多胺與環狀碳酸酯之反應產物。應瞭解,在某些實施例中,多胺之一級胺 與環狀碳酸酯反應。在本發明之一些實施例中,多胺與環狀碳酸酯之反應產物可隨後與環氧官能聚合物(諸如用於製備主要媒劑及/或研磨媒劑之彼等聚合物)反應。具體而言,在一些實施例中,反應產物之二級胺與環氧官能聚合物之環氧官能基反應。Non-limiting examples of suitable cyclic carbonates that can be used to form the urethane curing agent include, but are not limited to, propylene carbonate, ethylene carbonate, butylene carbonate, or combinations thereof. Non-limiting examples of suitable acyclic carbonates that can be used to form the urethane include, but are not limited to, dimethyl carbonate, diethyl carbonate, methyl ethyl carbonate, dipropyl carbonate, methyl carbonate Propyl ester, dibutyl carbonate or a combination thereof. In some embodiments of the invention, the acyclic carbonate comprises dimethyl carbonate. Non-limiting examples of suitable amines that can be used to form the urethane include, but are not limited to, di-ethyltriamine, di-propyltriamine, diexexyltriamine, isophoronediamine, 4 '-Diaminocyclohexylamine, xylylenediamine, N-hydroxyethylethylenediamine, hexyltriamine, amideethylamine or a combination thereof. In some embodiments, the curing agent is the reaction product of a polyamine and a cyclic carbonate. It will be appreciated that in certain embodiments, the polyamine monoamine Reacts with a cyclic carbonate. In some embodiments of the invention, the reaction product of the polyamine and the cyclic carbonate can be subsequently reacted with an epoxy functional polymer such as those used to prepare the primary vehicle and/or milling media. Specifically, in some embodiments, the secondary amine of the reaction product is reacted with an epoxy functional group of the epoxy functional polymer.
可用於形成胺基甲酸酯固化劑之合適異氰酸酯之非限制性實例包括(但不限於)甲苯二異氰酸酯、4,4'-二異氰酸亞甲基二苯酯、異氟爾酮二異氰酸酯、二異氰酸伸己酯、二異氰酸伸二甲苯酯、二異氰酸四甲基伸二甲苯酯、直鏈脂族二異氰酸酯(諸如二異氰酸1,4-伸丁酯、降莰烷二異氰酸酯及二異氰酸1,6-伸己酯)、異氟爾酮二異氰酸酯及4,4'-亞甲基雙-(異氰酸環己酯)、芳族二異氰酸酯(諸如二異氰酸對伸苯酯、二苯基甲烷-4,4'-二異氰酸酯及2,4-或2,6-甲苯二異氰酸酯)、高級聚異氰酸酯(諸如三苯基甲烷-4,4',4"-三異氰酸酯、1,2,4-苯三異氰酸酯及聚亞甲基聚苯基異氰酸酯),及二異氰酸1,6-伸己酯之三聚物,或其組合。應注意,該等異氰酸酯之二聚物、三聚物及較高官能物質亦可用於本發明。可用於形成胺基甲酸酯之合適醇之非限制性實例包括(但不限於)甲醇、乙醇、丙醇、異丙醇、丁醇、二醇醚及其他醇。Non-limiting examples of suitable isocyanates that can be used to form the urethane curing agent include, but are not limited to, toluene diisocyanate, methylene diphenyl 4,4'-diisocyanate, isophorone diisocyanate , dihexyl isocyanate, xylylene diisocyanate, tetramethylxylylene diisocyanate, linear aliphatic diisocyanate (such as 1,4-butylene diisocyanate, hail Alkyl diisocyanate and 1,6-extended hexanyl isocyanate, isophorone diisocyanate and 4,4'-methylenebis-(cyclohexyl isocyanate), aromatic diisocyanate (such as two Benzyl isocyanate, diphenylmethane-4,4'-diisocyanate and 2,4- or 2,6-toluene diisocyanate), higher polyisocyanate (such as triphenylmethane-4,4', 4"-triisocyanate, 1,2,4-benzene triisocyanate and polymethylene polyphenyl isocyanate), and terpolymer of 1,6-extended hexyl isocyanate, or a combination thereof. It should be noted that Dimers, trimers, and higher functionalities of such isocyanates are also useful in the present invention. Non-limiting examples of suitable alcohols that can be used to form urethane include (but not To) methanol, ethanol, propanol, isopropanol, butanol, glycol ethers and other alcohols.
如上所述,適用於含胺鹽基團聚合物、陽離子性丙烯酸聚合物及/或含羥基聚合物之固化劑包括異氰酸酯以及封端異氰酸酯。應注意,如本文中所使用,"異氰酸酯"亦包括聚異氰酸酯,且反之亦然。聚異氰酸酯固化劑可為大體 上無游離異氰酸酯基之完全封端聚異氰酸酯,或其可如美國專利3,984,299中所述,經部分封端且與樹脂主鏈反應。聚異氰酸酯可為脂族、芳族聚異氰酸酯或其組合。在一些實施例中,利用二異氰酸酯,不過在其他實施例中亦可使用高級聚異氰酸酯替代二異氰酸酯或與二異氰酸酯組合使用。As described above, curing agents suitable for the amine group-containing polymer, the cationic acrylic polymer, and/or the hydroxyl group-containing polymer include isocyanates and blocked isocyanates. It should be noted that as used herein, "isocyanate" also includes polyisocyanates, and vice versa. Polyisocyanate curing agent can be generally A fully blocked polyisocyanate having no free isocyanate groups, or it may be partially blocked and reacted with the resin backbone as described in U.S. Patent 3,984,299. The polyisocyanate can be an aliphatic, aromatic polyisocyanate or a combination thereof. In some embodiments, diisocyanates are utilized, although in other embodiments higher polyisocyanates may be used in place of or in combination with diisocyanates.
亦可使用異氰酸酯預聚物,例如聚異氰酸酯與多元醇(諸如新戊二醇及三羥甲基丙烷)或與聚合多元醇(諸如聚己內酯二醇及三醇)之反應產物(NCO/OH當量比大於1)。可使用二苯基甲烷-4,4'-二異氰酸酯與聚亞甲基聚苯基異氰酸酯之混合物。It is also possible to use isocyanate prepolymers, for example the reaction products of polyisocyanates with polyols such as neopentyl glycol and trimethylolpropane or with polymeric polyols such as polycaprolactone diols and triols (NCO/ The OH equivalent ratio is greater than 1). A mixture of diphenylmethane-4,4'-diisocyanate and polymethylene polyphenyl isocyanate can be used.
任何合適醇或多元醇可用作本發明之可電沈積塗料組合物中之聚異氰酸酯的封端劑,其限制條件為該藥劑可在固化溫度下去封端且限制條件為不形成膠凝產物。舉例而言,合適醇包括(但不限於)甲醇、乙醇、丙醇、異丙醇、丁醇、2-乙基己醇、丁氧基乙醇、己氧基乙醇、2-乙基己氧基乙醇、正丁醇、環己醇、苯甲醇(phenyl carbinol)、甲基苯基甲醇、乙二醇單丁基醚、二乙二醇單丁基醚、乙二醇單甲基醚、丙二醇單甲基醚或其組合。Any suitable alcohol or polyol can be used as the end capping agent for the polyisocyanate in the electrodepositable coating composition of the present invention, with the proviso that the agent can be capped at the curing temperature and is limited to the formation of a gelled product. For example, suitable alcohols include, but are not limited to, methanol, ethanol, propanol, isopropanol, butanol, 2-ethylhexanol, butoxyethanol, hexyloxyethanol, 2-ethylhexyloxy Ethanol, n-butanol, cyclohexanol, phenyl carbinol, methylphenylmethanol, ethylene glycol monobutyl ether, diethylene glycol monobutyl ether, ethylene glycol monomethyl ether, propylene glycol Methyl ether or a combination thereof.
在本發明之某些實施例中,封端劑包含一或多種1,3-二醇及/或1,2-二醇。在本發明之一實施例中,封端劑包含一或多種1,2-二醇,通常一或多種C3 至C6 1,2-二醇。舉例而言,封端劑可選自1,2-丙二醇、1,3-丁二醇、1,2-丁二醇、1,2-戊二醇、三甲基戊二醇及/或1,2-己二醇中之至少一 者。In certain embodiments of the invention, the capping agent comprises one or more 1,3-diols and/or 1,2-diols. In one embodiment of the invention, the capping agent comprises a 1,2-diol or more, usually one or more C 3 to C 6 1,2- diol. For example, the blocking agent can be selected from the group consisting of 1,2-propanediol, 1,3-butanediol, 1,2-butanediol, 1,2-pentanediol, trimethylpentanediol, and/or At least one of 2-hexanediol.
其他合適封端劑包括諸如甲基乙基酮肟、丙酮肟及環己酮肟之肟類及諸如ε-己內醯胺之內醯胺類。Other suitable blocking agents include hydrazines such as methyl ethyl ketone oxime, acetone oxime and cyclohexanone oxime and internal guanamines such as ε-caprolactam.
如上所述,在一些實施例中,用於本發明中之固化劑為酯固化劑。應注意,如本文中所使用,"酯"亦包括聚酯。因此,在一些實施例中,為聚酯固化劑。合適聚酯固化劑包括具有每分子多於1個酯基之物質。酯基係以(例如)在達250℃之溫度及達90分鐘之固化時間下足以實現交聯之量存在。應瞭解,可接受之固化溫度及固化時間將視待塗佈之基板及其最終用途而定。As described above, in some embodiments, the curing agent used in the present invention is an ester curing agent. It should be noted that as used herein, "ester" also includes polyester. Thus, in some embodiments, it is a polyester curing agent. Suitable polyester curing agents include those having more than one ester group per molecule. The ester group is present in an amount sufficient to effect crosslinking, for example, at a temperature of up to 250 ° C and a cure time of up to 90 minutes. It will be appreciated that acceptable curing temperatures and curing times will depend on the substrate to be coated and its end use.
通常適合作為聚酯固化劑之化合物為聚羧酸之聚酯。非限制性實例包括二羧酸之雙(2-羥烷基)酯,諸如壬二酸雙(2-羥丁基)酯及對苯二甲酸雙(2-羥乙基)酯;三(2-乙基己醯基)苯偏三酸酯;及自二羧酸酐及醇(包括多元醇)製備之酸性半酯的聚(2-羥烷基)酯。後一類型適於提供具有超過2之最終官能度之聚酯。一合適實例包括藉由以下程序製備之聚酯:首先使等同量之二羧酸酐(例如琥珀酸酐或鄰苯二甲酸酐)與三元醇或四元醇(諸如甘油、三羥甲基丙烷或異戊四醇)在低於150℃之溫度下反應,且隨後使酸性聚酯與至少等同量之環氧烷(諸如1,2-環氧丁烷、環氧乙烷或環氧丙烷)反應。聚酯固化劑(ii)可包含酸酐。另一合適聚酯包含低碳2-羥基-烷基封端聚-烷二醇對苯二甲酸酯。A compound which is generally suitable as a polyester curing agent is a polyester of a polycarboxylic acid. Non-limiting examples include bis(2-hydroxyalkyl) esters of dicarboxylic acids such as bis(2-hydroxybutyl) sebacate and bis(2-hydroxyethyl)terephthalate; -ethylhexyl)benzenetricarboxylic acid ester; and poly(2-hydroxyalkyl) ester of an acid half ester prepared from a dicarboxylic anhydride and an alcohol (including a polyol). The latter type is suitable for providing polyesters having a final functionality of more than 2. A suitable example includes a polyester prepared by the following procedure: first an equivalent amount of a dicarboxylic anhydride (such as succinic anhydride or phthalic anhydride) with a trihydric or tetrahydric alcohol (such as glycerol, trimethylolpropane or Isopentyl alcohol) reacts at a temperature below 150 ° C and then reacts the acidic polyester with at least an equivalent amount of alkylene oxide such as 1,2-butylene oxide, ethylene oxide or propylene oxide. . The polyester curing agent (ii) may contain an acid anhydride. Another suitable polyester comprises a low carbon 2-hydroxy-alkyl terminated poly-alkylene terephthalate.
在一些實施例中,聚酯包含每分子至少一個酯基,其中接近於酯化羥基之碳原子具有游離羥基。In some embodiments, the polyester comprises at least one ester group per molecule, wherein the carbon atom adjacent to the esterified hydroxyl group has a free hydroxyl group.
亦適合的為自半酯中間體製備之四官能聚酯,該中間體係藉由使苯偏三酸酐與丙二醇(莫耳比2:1)反應,隨後使中間體與1,2-環氧丁烷及支鏈單羧酸之縮水甘油酯反應來製備。Also suitable are tetrafunctional polyesters prepared from semi-ester intermediates which are reacted with propylene trimellitic anhydride and propylene glycol (mole ratio 2:1), followed by intermediates with 1,2-epoxybutylene It is prepared by reacting an alkane with a glycidyl ester of a branched monocarboxylic acid.
在一些實施例中,在含活性氫樹脂包含陽離子鹽基團時,聚酯固化劑大體上不含酸。出於本發明之目的,"大體上不含酸"意謂具有不到0.2 meq/g之酸。對水性系統而言,例如對陰極電塗而言,塗料組合物、合適聚酯固化劑可包括自聚羧酸酐、一或多種二醇、醇、二醇單醚、多元醇及/或單環氧化物製備之非酸性聚酯。In some embodiments, the polyester curing agent is substantially free of acid when the active hydrogen containing resin comprises a cationic salt group. For the purposes of the present invention, "substantially free of acid" means having an acid of less than 0.2 meq/g. For aqueous systems, for example for cathodic electrocoating, coating compositions, suitable polyester curing agents may include self-polycarboxylic anhydrides, one or more diols, alcohols, glycol monoethers, polyols, and/or monocyclic rings. A non-acidic polyester prepared from an oxide.
合適聚羧酸酐可包括二羧酸酐,諸如琥珀酸酐、鄰苯二甲酸酐、四氫鄰苯二甲酸酐、苯偏三酸酐、六氫鄰苯二甲酸酐、甲基六氫鄰苯二甲酸酐、3,3',4,4'-二苯甲酮四羧酸二酐及苯均四酸二酐。可使用酸酐之混合物。Suitable polycarboxylic anhydrides may include dicarboxylic anhydrides such as succinic anhydride, phthalic anhydride, tetrahydrophthalic anhydride, trimellitic anhydride, hexahydrophthalic anhydride, methylhexahydrophthalic anhydride , 3,3',4,4'-benzophenonetetracarboxylic dianhydride and pyromellitic dianhydride. A mixture of anhydrides can be used.
合適醇可包括直鏈、環狀或支鏈醇。醇實質上可為脂族、芳族或芳脂族的。如本文中所使用,術語二醇及單環氧化物意欲包括含有每分子不超過兩個醇基之化合物,該等醇基可在150℃之溫度以下與羧酸或酸酐官能反應。Suitable alcohols may include linear, cyclic or branched alcohols. The alcohol can be substantially aliphatic, aromatic or araliphatic. As used herein, the terms diol and monoepoxide are intended to include compounds containing no more than two alcohol groups per molecule, which may be reacted with a carboxylic acid or anhydride function below a temperature of 150 °C.
合適單環氧化物可包括支鏈單羧酸之縮水甘油酯。另外,可使用氧化烯,諸如環氧乙烷或環氧丙烷。合適二醇可包括(例如)乙二醇及聚乙二醇、丙二醇及聚丙二醇以及1,6-己二醇。可使用二醇之混合物。Suitable monoepoxides can include glycidyl esters of branched monocarboxylic acids. In addition, alkylene oxides such as ethylene oxide or propylene oxide can be used. Suitable diols may include, for example, ethylene glycol and polyethylene glycol, propylene glycol and polypropylene glycol, and 1,6-hexanediol. Mixtures of diols can be used.
非酸性聚酯可(例如)藉由以一或多個步驟使苯偏三酸酐(TMA)與支鏈單羧酸之縮水甘油酯按1:1.5至1:3之莫耳比 且在需要時借助於諸如辛酸亞錫或苄基二甲胺之酯化觸媒在50-150℃之溫度下反應來製備。另外,苯偏三酸酐可與3莫耳當量之單醇(諸如2-乙基己醇)反應。Non-acidic polyesters may, for example, be a molar ratio of trimellitic anhydride (TMA) to branched glycidyl esters in a one or more steps of from 1:1.5 to 1:3. And if necessary, it is prepared by reacting with an esterification catalyst such as stannous octoate or benzyldimethylamine at a temperature of 50 to 150 °C. Alternatively, the trimellitic anhydride can be reacted with a 3 molar equivalent of a monoalcohol such as 2-ethylhexanol.
或者,苯偏三酸酐(1 mol)可首先與二醇或二醇單烷基醚(諸如乙二醇單丁基醚)以1:0.5至1:1之莫耳比反應,之後,使產物與2莫耳之支鏈單羧酸之縮水甘油酯反應。此外,聚羧酸酐(亦即,每分子含有兩個或三個羧基官能之彼等酸酐)或聚羧酸酐之混合物可同時與二醇(諸如1,6-己二醇)及/或二醇單醚及單環氧化物反應,之後若需要,則可使產物與單環氧化物反應。對水性組合物而言,該等非酸性聚酯亦可經諸如二伸乙基三胺之多胺修飾以形成醯胺聚酯。該等"經胺修飾"聚酯可併入上文所述之直鏈或支鏈胺加合物中以形成自固化胺加合物酯。Alternatively, the trimellitic anhydride (1 mol) can be first reacted with a diol or a diol monoalkyl ether (such as ethylene glycol monobutyl ether) at a molar ratio of 1:0.5 to 1:1, after which the product is Reaction with a glycidyl ester of 2 moles of branched monocarboxylic acid. In addition, the polycarboxylic anhydride (i.e., the anhydride containing two or three carboxyl functions per molecule) or a mixture of polycarboxylic anhydrides can be simultaneously combined with a diol such as 1,6-hexanediol and/or a diol. The monoether and monoepoxide are reacted, and if desired, the product can be reacted with a monoepoxide. For aqueous compositions, the non-acidic polyesters may also be modified with a polyamine such as di-ethyltriamine to form a guanamine polyester. The "amine-modified" polyesters can be incorporated into the linear or branched amine adducts described above to form self-curing amine adduct esters.
上文所述類型之非酸性聚酯通常可溶於有機溶劑中,且通常可容易地與上文所述之主要成膜樹脂混合。Non-acidic polyesters of the type described above are generally soluble in organic solvents and are generally readily miscible with the primary film-forming resins described above.
適用於水性系統之聚酯或該等物質之混合物通常在包含陽離子鹽基團之樹脂存在下分散於水中。Polyesters suitable for aqueous systems or mixtures of such materials are typically dispersed in water in the presence of a resin comprising a cationic salt group.
在一些實施例中,聚異氰酸酯固化劑通常係以按電沈積浴之樹脂固體之總重量計5重量%的量結合陽離子性主要成膜聚合物一起利用。在其他實施例中,聚異氰酸酯固化劑通常係以按電沈積浴之樹脂固體之總重量計60重量%的量結合陽離子性主要成膜聚合物一起利用。在其他實施例中,主要成膜聚合物之量可在先前句子中所述之值(包括所述之值)之任何組合之間的範圍內變化。舉例而言, 聚異氰酸酯固化劑可以按電沈積浴之樹脂固體之總重量計在20重量%至50重量%之範圍內變化的量結合陽離子性主要成膜聚合物一起利用。In some embodiments, the polyisocyanate curing agent is typically based on the total weight of the resin solids of the electrodeposition bath. An amount of 5% by weight is utilized in conjunction with the cationic primary film forming polymer. In other embodiments, the polyisocyanate curing agent is typically based on the total weight of the resin solids of the electrodeposition bath. An amount of 60% by weight is utilized in conjunction with the cationic primary film forming polymer. In other embodiments, the amount of primary film-forming polymer can vary over a range between any combination of values (including stated values) recited in the previous sentence. For example, the polyisocyanate curing agent can be utilized in combination with a cationic primary film-forming polymer in an amount ranging from 20% to 50% by weight, based on the total weight of the resin solids of the electrodeposition bath.
在一些實施例中,可用於電塗組合物中之固化劑為美國專利第5,902,473號中所述之固化劑,該專利以引用之方式併入本文中。In some embodiments, the curing agent that can be used in the electrocoating composition is a curing agent as described in U.S. Patent No. 5,902,473, the disclosure of which is incorporated herein by reference.
應瞭解,熟習此項技術者可基於主要成膜聚合物之官能度來確定適用於特定主要成膜聚合物之固化劑。It will be appreciated that those skilled in the art can determine the curing agent suitable for a particular primary film forming polymer based on the functionality of the primary film forming polymer.
在某些實施例中,固化劑之至少一部分與主要成膜聚合物化學鍵結。在其他實施例中,固化劑不與主要成膜聚合物化學鍵結且係作為添加劑添加至可電沈積塗料組合物中。In certain embodiments, at least a portion of the curing agent is chemically bonded to the primary film forming polymer. In other embodiments, the curing agent is not chemically bonded to the primary film forming polymer and is added as an additive to the electrodepositable coating composition.
電沈積浴之第二組分(研磨媒劑)通常包含顏料組合物(顏料漿),其可具有一或多種顏料、水可分散性聚合物及視需要使用之添加劑(諸如表面活性劑、潤濕劑、觸媒、分散助劑或其組合)。應注意,研磨媒劑之水可分散性聚合物可與樹脂摻合物中之主要成膜聚合物相同或不同。用於研磨媒劑中之顏料組合物可為習知類型,包含(例如)鐵氧化物、鉻酸鍶、碳黑、煤粉、二氧化鈦、滑石、硫酸鋇之顏料以及諸如鎘黃、鎘紅、鉻黃等等之著色顏料。在一些實施例中,顏料組合物可包含效應顏料,諸如(但不限於)導電及/或光致變色顏料(photo chromic pigment)。分散液之顏料含量通常係表示為顏料與樹脂比。在本發明之實踐中,當使用顏料時,顏料與樹脂比通常在約0.02:1至1:1之 範圍內。上述其他添加劑通常係以按樹脂固體之重量計在分散液中以約0.01重量%至3重量%之量存在。The second component of the electrodeposition bath (grinding agent) typically comprises a pigment composition (pigment slurry) which may have one or more pigments, a water dispersible polymer and, if desired, additives such as surfactants, Wet agent, catalyst, dispersing aid or a combination thereof). It should be noted that the water dispersible polymer of the grinding vehicle may be the same as or different from the major film forming polymer in the resin blend. The pigment composition used in the grinding vehicle may be of a conventional type including, for example, iron oxide, strontium chromate, carbon black, coal powder, titanium dioxide, talc, barium sulfate pigment, and such as cadmium yellow, cadmium red, Colored pigments such as chrome yellow. In some embodiments, the pigment composition can comprise an effect pigment such as, but not limited to, a conductive and/or photo chromic pigment. The pigment content of the dispersion is generally expressed as a pigment to resin ratio. In the practice of the present invention, when a pigment is used, the pigment to resin ratio is typically between about 0.02:1 and 1:1. Within the scope. The above other additives are usually present in an amount of from about 0.01% by weight to about 3% by weight based on the weight of the resin solids in the dispersion.
將電沈積浴之第一及第二組分一起分散於包含水及(通常)聚結溶劑之水性介質中,從而形成電沈積浴。可用於電沈積浴之適用聚結溶劑包括(但不限於)烴、醇、酯、醚及/或酮。在一實施例中,聚結溶劑包括醇、多元醇及酮。特定聚結溶劑包括異丙醇、丁醇、2-乙基己醇、異佛爾酮、2-甲氧基戊酮、乙二醇及丙二醇及乙二醇之單乙基、單丁基及單己基醚。在某些實施例中,用於電沈積浴中之聚結溶劑之量以用於製得電沈積浴之水性介質的總重量計,為0.01重量%。在其他實施例中,用於電沈積浴中之聚結溶劑之量以用於製得電沈積浴之水性介質的總重量計,為25重量%。在其他實施例中,用於電沈積浴中之聚結溶劑之量可在先前句子中所述之值(包括所述之值)之任何組合之間的範圍內變化。舉例而言,在一實施例中,用於電沈積浴中之聚結溶劑之量可以用於製得電沈積浴之水性介質的總重量計,在0.05重量%至5重量%之範圍內變化。The first and second components of the electrodeposition bath are dispersed together in an aqueous medium comprising water and (usually) a coalescing solvent to form an electrodeposition bath. Suitable coalescing solvents that can be used in the electrodeposition bath include, but are not limited to, hydrocarbons, alcohols, esters, ethers, and/or ketones. In one embodiment, the coalescing solvent comprises an alcohol, a polyol, and a ketone. Specific coalescing solvents include isopropanol, butanol, 2-ethylhexanol, isophorone, 2-methoxypentanone, ethylene glycol and propylene glycol, and monoethyl, monobutyl and ethylene glycol. Monohexyl ether. In certain embodiments, the amount of coalescing solvent used in the electrodeposition bath is, based on the total weight of the aqueous medium used to make the electrodeposition bath, 0.01% by weight. In other embodiments, the amount of coalescing solvent used in the electrodeposition bath is, based on the total weight of the aqueous medium used to make the electrodeposition bath, 25 wt%. In other embodiments, the amount of coalescing solvent used in the electrodeposition bath can vary over a range between any combination of values (including the stated values) recited in the previous sentence. For example, in one embodiment, the amount of coalescing solvent used in the electrodeposition bath may vary from 0.05% to 5% by weight based on the total weight of the aqueous medium from which the electrodeposition bath is made. .
如上所述,在某些實施例中,環胍可為添加至可電沈積塗料組合物中之添加劑形式。在一些實施例中,添加劑係"以純淨形式"添加,亦即,在不與構成可電沈積塗料組合物之其他組分預先摻合或反應的情況下直接添加至可電沈積塗料組合物中。舉例而言,在一些實施例中,將添加劑"以純淨形式"添加至電沈積浴中及/或添加至用於形成電沈 積浴之組分(例如,樹脂摻合物及/或研磨媒劑)中。在其他實施例中,在水性介質被添加至電沈積浴中之前,將添加劑添加至水性介質中。舉例而言,可將添加劑添加至水性介質中,該水性介質在電沈積浴已製備後被添加至電沈積浴中(亦即,後添加)。在一些實施例中,在樹脂摻合物及/或研磨媒劑分散於水性介質中之前,將添加劑"以純淨形式"添加至樹脂摻合物中及/或研磨媒劑中。換言之,添加劑可在形成電沈積浴之前添加至樹脂摻合物及/或研磨媒劑中。此類添加劑之製備將在下文實例部分中更詳細討論。As noted above, in certain embodiments, the cyclic oxime can be in the form of an additive that is added to the electrodepositable coating composition. In some embodiments, the additive is added "in neat form", that is, directly added to the electrodepositable coating composition without pre-blending or reacting with other components that make up the electrodepositable coating composition. . For example, in some embodiments, the additive is added "in neat form" to the electrodeposition bath and/or added to form an electrode sink. The components of the bath (for example, resin blends and/or grinding media). In other embodiments, the additive is added to the aqueous medium before the aqueous medium is added to the electrodeposition bath. For example, the additive can be added to an aqueous medium that is added to the electrodeposition bath after the electrodeposition bath has been prepared (ie, post added). In some embodiments, the additive is added "in neat form" to the resin blend and/or to the milling media prior to dispersion of the resin blend and/or grinding media in the aqueous medium. In other words, the additive can be added to the resin blend and/or the milling media prior to forming the electrodeposition bath. The preparation of such additives will be discussed in more detail in the Examples section below.
在某些實施例中,添加至可電沈積塗料組合物中之添加劑包含環胍與單官能化合物之反應產物。合適單官能化合物包括(但不限於)單縮水甘油基化合物,諸如苯酚縮水甘油醚、2乙基己基縮水甘油醚、癸酸縮水甘油酯或其組合。In certain embodiments, the additive added to the electrodepositable coating composition comprises the reaction product of a cyclic oxime and a monofunctional compound. Suitable monofunctional compounds include, but are not limited to, monoglycidyl compounds such as phenol glycidyl ether, 2 ethylhexyl glycidyl ether, glycidyl decanoate or combinations thereof.
此外,在一些實施例中,本發明之環胍係作為包含環胍及額外組分之混合物之部分併入樹脂摻合物及/或研磨媒劑中。應瞭解,環胍以及額外組分均可分別與樹脂摻合物及/或研磨媒劑之主要成膜聚合物及/或水可分散性聚合物上之官能基反應。在一些實施例中,額外組分為添加至樹脂摻合物及/或研磨媒劑中之"胺包裝"。如本文中所使用,"胺包裝"係指諸如(但不限於)多胺、一級胺、二級胺、胺-胺基碳酸酯(carbamate)、三級胺或其組合之胺之混合物。Moreover, in some embodiments, the cyclic oxime of the present invention is incorporated into the resin blend and/or the milling media as part of a mixture comprising the cyclic oxime and additional components. It will be appreciated that the cyclic oxime and the additional components may each react with the functional groups on the resin film blend and/or the primary film forming polymer of the grinding vehicle and/or the water dispersible polymer. In some embodiments, the additional component is an "amine package" that is added to the resin blend and/or grinding media. As used herein, "amine packaging" refers to a mixture of amines such as, but not limited to, polyamines, primary amines, secondary amines, amine-carbamate, tertiary amines, or combinations thereof.
在其他實施例中,額外組分可包括硫化物或胺包裝及硫 化物之組合。可用於本發明中之合適硫化物包括(但不限於)羥基官能硫化物,諸如硫代二乙醇。In other embodiments, additional components may include sulfide or amine packaging and sulfur a combination of compounds. Suitable sulfides useful in the present invention include, but are not limited to, hydroxy functional sulfides such as thiodiethanol.
在某些實施例中,額外組分包含其他官能族群,諸如(但不限於)醇、三級胺、胺基甲酸酯、脲、酮亞胺、胺基碳酸酯或其組合。In certain embodiments, the additional components comprise other functional groups such as, but not limited to, alcohols, tertiary amines, urethanes, ureas, ketimines, amine carbonates, or combinations thereof.
在一些實施例中,胺基碳酸酯官能族群為多胺與碳酸酯(諸如環狀碳酸酯)之反應產物。可用於形成胺基碳酸酯之合適多胺包括(但不限於)二伸乙基三胺、二伸丙基三胺、雙伸己基三胺、異氟爾酮二胺、4'-雙胺基環己胺、伸二甲苯基二胺、N-羥乙基乙二胺、伸己基三胺、參胺基乙胺或其組合。在某些實施例中,多胺包含一級胺及/或二級胺。可用於形成胺基碳酸酯之合適碳酸酯包括(但不限於)碳酸乙二酯、碳酸丙二酯、碳酸丁二酯或其混合物。In some embodiments, the amino carbonate functional group is the reaction product of a polyamine and a carbonate such as a cyclic carbonate. Suitable polyamines which can be used to form the amino carbonate include, but are not limited to, di-ethyltriamine, di-propyltriamine, diexexyltriamine, isophoronediamine, 4'-diamine Cyclohexylamine, xylylenediamine, N-hydroxyethylethylenediamine, hexyltriamine, amideethylamine or a combination thereof. In certain embodiments, the polyamine comprises a primary amine and/or a secondary amine. Suitable carbonates that can be used to form the amine carbonate include, but are not limited to, ethylene carbonate, propylene carbonate, butylene carbonate or mixtures thereof.
在一些實施例中,額外組分包含多胺與碳酸酯之反應產物。先前段落中所列之多胺及碳酸酯適用於形成此類反應產物。在某些實施例中,多胺包含一級胺及二級胺。在一些實施例中,多胺之一級胺之至少一部分與環狀碳酸酯反應,從而形成胺基碳酸酯。In some embodiments, the additional component comprises the reaction product of a polyamine and a carbonate. The polyamines and carbonates listed in the previous paragraphs are suitable for forming such reaction products. In certain embodiments, the polyamine comprises a primary amine and a secondary amine. In some embodiments, at least a portion of the polyamine monoamine is reacted with a cyclic carbonate to form an amino carbonate.
在一些實施例中,環胍為與樹脂摻合物及/或研磨媒劑之聚合物反應之混合物的唯一組分。In some embodiments, the cyclic oxime is the sole component of the mixture of the resin blend and/or the polymer of the milling vehicle.
如上所述,在某些實施例中,環胍可併入可電沈積塗料組合物之聚合物中,諸如主要成膜聚合物及/或研磨媒劑之水可分散性聚合物。為清楚起見,主要成膜聚合物及研磨媒劑之水可分散性聚合物可統稱為"聚合物"。舉例而 言,環胍可經由環胍與聚合物上之官能基之間的反應併入聚合物中。在一些實施例中,環胍係藉由與聚合物上之環氧官能基反應而併入環氧官能聚合物中。併入環胍之聚合物之製備將在下文實例部分中更詳細討論。As noted above, in certain embodiments, the cyclic oxime can be incorporated into a polymer of an electrodepositable coating composition, such as a water-dispersible polymer of a primary film-forming polymer and/or a milling media. For clarity, the water-dispersible polymers of the major film-forming polymers and grinding media may be collectively referred to as "polymers." For example The ring enthalpy can be incorporated into the polymer via a reaction between the ring oxime and a functional group on the polymer. In some embodiments, the cyclic oxime is incorporated into the epoxy functional polymer by reaction with an epoxy functional group on the polymer. The preparation of the polymer incorporated into the loop will be discussed in more detail in the Examples section below.
在本發明之一些實施例中,可藉由各種方法使環胍與聚合物之聚合反應產物為陽離子性及水可分散性的。舉例而言,在一些實施例中,藉由用諸如乳酸、乙酸、胺磺酸、甲酸、磷酸、甲烷磺酸、對甲苯磺酸、二羥甲基丙酸、其他酸或其組合之酸中和與聚合物鍵結之環胍部分之至少一部分而使聚合物與環胍之反應產物為陽離子性及水可分散性的。在一些實施例中,藉由用酸中和與聚合物鍵結之胺之至少一部分(亦即不中和環胍)而使聚合物為陽離子性及水可分散性的。在其他實施例中,藉由用酸中和環胍之至少一部分及胺之至少一部分而使聚合物為陽離子性及水可分散性的,其中該等環胍及胺中之各者與聚合物鍵結。In some embodiments of the invention, the polymerization product of the cyclic oxime and the polymer can be cationic and water dispersible by various methods. For example, in some embodiments, by using an acid such as lactic acid, acetic acid, amine sulfonic acid, formic acid, phosphoric acid, methanesulfonic acid, p-toluenesulfonic acid, dimethylolpropionic acid, other acids, or combinations thereof The reaction product of the polymer and the cyclic oxime is cationic and water dispersible with at least a portion of the cyclic moiety bonded to the polymer. In some embodiments, the polymer is rendered cationic and water dispersible by neutralizing at least a portion of the amine bonded to the polymer with an acid (ie, not neutralizing the cyclic oxime). In other embodiments, the polymer is cationic and water dispersible by neutralizing at least a portion of the cyclic oxime with an acid and at least a portion of the amine, wherein each of the cyclic oxime and the amine is a polymer Bonding.
如上所述,在本發明之某些實施例中,用於可電沈積塗料組合物中之固化劑包含環胍與異氰酸酯之反應產物。在一些實施例中,異氰酸酯包含脂族異氰酸酯、芳族異氰酸酯或其組合。該等實施例之一潛在優勢為將環胍併入固化劑中產生封端固化觸媒。換言之,在將熱施加於固化劑後,環胍自固化劑釋放且用於催化可電沈積塗料組合物之固化過程。As noted above, in certain embodiments of the invention, the curing agent used in the electrodepositable coating composition comprises the reaction product of a cyclic oxime and an isocyanate. In some embodiments, the isocyanate comprises an aliphatic isocyanate, an aromatic isocyanate, or a combination thereof. One potential advantage of these embodiments is the incorporation of the ring enthalpy into the curing agent to produce a capping cure catalyst. In other words, after heat is applied to the curing agent, the cyclic oxime is released from the curing agent and is used to catalyze the curing process of the electrodepositable coating composition.
此外,在一些實施例中,將環胍用於封端固化劑之至少一部分。因此,應瞭解,一旦將固化劑去封端(亦即,環 胍不再將固化劑封端)後,固化劑就能與主要成膜聚合物上之官能基反應,進而固化主要成膜聚合物,而環胍催化固化過程。Further, in some embodiments, the loop is used to cap at least a portion of the curing agent. Therefore, it should be understood that once the curing agent is deblocked (ie, the ring After the curing agent is no longer blocked, the curing agent reacts with the functional groups on the primary film-forming polymer to cure the primary film-forming polymer, while the cyclic oxime catalyzes the curing process.
如上所述,在某些實施例中,可併入可電沈積塗料組合物中之凹坑控制添加劑可包含環胍。合適凹坑控制添加劑包括(但不限於)美國專利第4,420,574號、第4,423,166號及第4,423,850號中所述之彼等添加劑,該等專利以引用之方式併入本文中。舉例而言,在一些實施例中,可使用環胍替代用於形成凹坑控制添加劑之胺之至少一部分。As noted above, in certain embodiments, the pit control additive that can be incorporated into the electrodepositable coating composition can comprise a ring. Suitable pit control additives include, but are not limited to, those described in U.S. Patent Nos. 4,420,574, 4,423,166, and 4,423,850, each incorporated herein by reference. For example, in some embodiments, at least a portion of the amine used to form the pit control additive can be replaced with a ring.
如上所述,在一些實施例中,可併入可電沈積塗料組合物中之微凝膠可包含環胍。可利用之合適微凝膠描述於美國專利第5,096,556號中,該專利以引用之方式併入本文中。舉例而言,在某些實施例中,可使用環胍替代用於形成微凝膠之胺之至少一部分。As noted above, in some embodiments, the microgel that can be incorporated into the electrodepositable coating composition can comprise a cyclic oxime. Suitable microgels are described in U.S. Patent No. 5,096,556, the disclosure of which is incorporated herein by reference. For example, in certain embodiments, at least a portion of the amine used to form the microgel can be replaced with a ring.
本發明之可電沈積塗料組合物可施加於許多基板上。因此,本發明另外係針對一種至少部分地經本文中所述之可電沈積塗料組合物塗佈之基板。應瞭解,電塗塗料組合物可作為單塗層或作為多層塗層複合物之一塗層施加於基板上。合適基板之非限制性實例可包括金屬、金屬合金及/或已金屬化之基板(諸如鍍鎳塑膠)。舉例而言,金屬或金屬合金可包括鋁及/或鋼。在一實施例中,鋼可為冷軋鋼、電鍍鋅鋼及熱浸鍍鋅鋼。在一實施例中,塗料所施加於之金屬表面之表面的至少一部分經諸如磷酸鋅之磷酸鹽預處理。在某些實施例中,經塗佈基板可包含車輛之一部 分,諸如車身(例如(但不限於)門、車身板件(body panel)、行李箱蓋(trunk deck lid)、頂板、引擎蓋及/或車頂)及/或車框架。如本文中所使用,術語"車輛"或其變體包括(但不限於)民用、商用及軍用陸地車輛,諸如小汽車及卡車。The electrodepositable coating composition of the present invention can be applied to a plurality of substrates. Accordingly, the present invention is directed to a substrate that is at least partially coated with an electrodepositable coating composition as described herein. It will be appreciated that the electrocoat coating composition can be applied to the substrate as a single coating or as a coating of a multilayer coating composite. Non-limiting examples of suitable substrates can include metals, metal alloys, and/or metallized substrates such as nickel plated plastic. For example, the metal or metal alloy can include aluminum and/or steel. In one embodiment, the steel may be cold rolled steel, electrogalvanized steel, and hot dip galvanized steel. In one embodiment, at least a portion of the surface of the metal surface to which the coating is applied is pretreated with a phosphate such as zinc phosphate. In some embodiments, the coated substrate can include one of the vehicles Sub-frames such as body (such as, but not limited to, doors, body panels, trunk deck lids, roof panels, hoods and/or roofs) and/or vehicle frames. As used herein, the term "vehicle" or variations thereof includes, but is not limited to, civil, commercial, and military land vehicles, such as cars and trucks.
此外,本發明之可電沈積塗料組合物可施加於基板上以賦予各種性質,諸如(但不限於)抗腐蝕性、抗碎裂性、填充性(亦即,隱藏下伏基板粗糙性之能力)、抗磨性、抗衝擊損壞性、耐火性及/或抗熱性、化學抗性、抗UV光性及/或結構完整性。Furthermore, the electrodepositable coating composition of the present invention can be applied to a substrate to impart various properties such as, but not limited to, corrosion resistance, chip resistance, fillability (i.e., ability to hide underlying substrate roughness). ), abrasion resistance, impact damage resistance, fire resistance and/or heat resistance, chemical resistance, UV resistance and/or structural integrity.
視基板而定,利用可在1伏特至數千伏特之範圍內變化之電壓將可電沈積塗料組合物施加(亦即,電沈積)於基板上。在一實施例中,所使用之電壓在50伏特至500伏特之範圍內變化。此外,在一實施例中,電流密度通常在每平方呎0.5安培與5安培之間。然而,應瞭解,電流密度傾向於在電沈積期間減少,此為絕緣薄膜之形成之指示。Depending on the substrate, the electrodepositable coating composition is applied (i.e., electrodeposited) to the substrate using a voltage that can vary from 1 volt to thousands of volts. In one embodiment, the voltage used varies from 50 volts to 500 volts. Moreover, in one embodiment, the current density is typically between 0.5 amps and 5 amps per square inch. However, it should be understood that the current density tends to decrease during electrodeposition, which is an indication of the formation of the insulating film.
在塗料已經由電沈積施加於基板上後,在一實施例中,藉由在90℃至260℃之範圍內變化的高溫下,將基板烘焙1分鐘至40分鐘之範圍內的時段來固化塗層。After the coating has been applied to the substrate by electrodeposition, in one embodiment, the substrate is cured by baking at a high temperature ranging from 90 ° C to 260 ° C for a period of from 1 minute to 40 minutes. Floor.
如上所述,在某些實施例中,將本發明之可電沈積塗料組合物用於電塗層中,該電塗層為構成具有各種塗層之基板的多層塗層複合物之部分。塗層可包括預處理層,諸如磷酸鹽層(例如磷酸鋅層);電塗層,其由本發明之可電沈積塗料組合物產生;及合適頂部塗層(例如,基底層、透 明塗層、著色單塗層及有色加透明複合組合物)。應瞭解,合適頂部塗層包括此項技術中已知之彼等塗層中之任何塗層,且各塗層可獨立地為水生、溶劑生的,呈固體微粒形式(亦即,粉末塗料組合物)或呈粉末漿液形式。頂部塗層通常包括成膜聚合物、交聯物質及(若為有色基底塗層或單塗層時)一或多種顏料。在一實施例中,將底塗層安置於電塗層與基底塗層之間。在某些實施例中,將頂部塗層之一或多者施加於大體上未經固化之下伏層上。舉例而言,在一些實施例中,將透明塗層施加於大體上未經固化之基底塗層之至少一部分上(濕壓濕(wet-on-wet)),且兩個層在下游過程中同時被固化。As noted above, in certain embodiments, the electrodepositable coating compositions of the present invention are used in electrical coatings that are part of a multilayer coating composite that forms a substrate having various coatings. The coating may include a pretreatment layer, such as a phosphate layer (eg, a zinc phosphate layer); an electrocoat layer, which is produced from the electrodepositable coating composition of the present invention; and a suitable top coating (eg, a substrate layer, Clear coating, colored single coating and colored plus transparent composite composition). It will be appreciated that suitable topcoats include any of the coatings known in the art, and that each coating can be independently aquatic, solvent-borne, in the form of solid particulates (ie, powder coating compositions) ) or in the form of a powder slurry. The top coat typically comprises a film forming polymer, a crosslinked material and, if a colored base coat or a single coat, one or more pigments. In one embodiment, the undercoat layer is disposed between the electrocoat layer and the base coat layer. In certain embodiments, one or more of the top coatings are applied to the underlying layer that is substantially uncured. For example, in some embodiments, a clear coating is applied to at least a portion of the substantially uncured base coating (wet-on-wet), and the two layers are in the downstream process It is cured at the same time.
此外,在一些實施例中,頂部塗層可直接施加於可電沈積塗層上。換言之,在一些實施例中,基板缺乏底塗層。舉例而言,在一些實施例中,基底塗層係直接施加於可電沈積塗層之至少一部分上。Further, in some embodiments, the top coating can be applied directly to the electrodepositable coating. In other words, in some embodiments, the substrate lacks an undercoat layer. For example, in some embodiments, the base coating is applied directly to at least a portion of the electrodepositable coating.
亦應瞭解,在某些實施例中,頂部塗層可施加於下伏層上,不管下伏層還未完全固化亦然。舉例而言,透明塗層可施加於基底塗層上,即使基底塗層還未經受固化步驟亦然。兩個層可隨後在後續固化步驟期間固化,進而消除對分別固化基底塗層及透明塗層之需要。It should also be appreciated that in certain embodiments, the top coating can be applied to the underlying layer, regardless of whether the underlying layer has not yet fully cured. For example, a clear coat can be applied to the base coat even if the base coat has not been subjected to the curing step. The two layers can then be cured during the subsequent curing step, thereby eliminating the need to separately cure the base coating and the clear coating.
在某些實施例中,諸如著色劑及填充劑之額外成分可存在於產生頂部塗層所用之各種塗料組合物中。可使用任何合適著色劑及填充劑。舉例而言,著色劑可以諸如離散粒子、分散液、溶液及/或薄片之任何合適形式添加至塗料 中。單一著色劑或兩種或兩種以上著色劑之混合物可用於本發明之塗料中。應注意,一般而言,著色劑可以足以賦予所要性質、視覺及/或顏色效應之任何量存在於多層複合物之一層中。In certain embodiments, additional ingredients such as colorants and fillers may be present in the various coating compositions used to create the top coating. Any suitable colorant and filler can be used. For example, the colorant can be added to the coating in any suitable form, such as discrete particles, dispersions, solutions, and/or flakes. in. A single colorant or a mixture of two or more colorants can be used in the coating of the present invention. It should be noted that in general, the colorant may be present in one of the layers of the multilayer composite in any amount sufficient to impart the desired properties, visual and/or color effects.
實例著色劑包括顏料、染料及色澤劑(tint)(諸如油漆工業中所用及/或Dry Color Manufacturers Association(DCMA)中所列之彼等著色劑),以及特殊效應組合物。著色劑可包括(例如)在使用條件下不可溶但可濕潤之細粉狀固體粉末。著色劑可為有機或無機的且可為聚結或非聚結的。著色劑可藉由研磨或簡單混合併入塗料中。著色劑可藉由使用研磨媒劑(諸如丙烯酸研磨媒劑)經由研磨至塗料中而併入,該研磨媒劑之使用對熟習此項技術者而言為熟悉的。Example colorants include pigments, dyes, and tints (such as those used in the paint industry and/or those listed in the Dry Color Manufacturers Association (DCMA)), as well as special effect compositions. The colorant may include, for example, a finely powdered solid powder that is insoluble but wettable under the conditions of use. The colorant can be organic or inorganic and can be agglomerated or non-agglomerated. The colorant can be incorporated into the coating by grinding or simple mixing. The colorant can be incorporated by grinding into the coating using a grinding vehicle, such as an acrylic grinding vehicle, the use of which is familiar to those skilled in the art.
實例顏料及/或顏料組合物包括(但不限於)咔唑二噁嗪粗顏料、偶氮、單偶氮、雙偶氮萘酚AS鹽類型(色澱)、苯并咪唑酮、縮合物、金屬錯合物、異吲哚啉酮、異吲哚啉及多環酞菁、喹吖啶酮、苝、哌端酮、二酮基吡咯幷吡咯、硫靛藍、蒽醌、陰丹士林、蒽嘧啶、黃士酮、皮蒽酮、蒽嵌蒽醌、二噁嗪、三芳基金炭、喹酞酮(quinophthalone)顏料、二酮基吡咯幷吡咯紅("DPP紅BO")、二氧化鈦、碳黑、氧化鋅、氧化銻等等及有機或無機UV乳濁顏料,諸如氧化鐵、透明紅色或黃色氧化鐵、酞菁藍及其混合物。術語"顏料"及"有色填充劑"可互換使用。Example pigments and/or pigment compositions include, but are not limited to, carbazole dioxazine crude pigments, azo, monoazo, bis-azonaphthol AS salt types (lakes), benzimidazolone, condensates , metal complex, isoindolinone, isoporphyrin and polycyclic phthalocyanine, quinacridone, anthracene, piperidone, diketopyrrolpyrrole, thioindigo, anthracene, indanthrene , pyridoxine, yellow ketone, dermatanone, ruthenium osmium, dioxazine, triaryl fund charcoal, quinophthalone pigment, diketopyrroloxime ("DPP red BO"), titanium dioxide, Carbon black, zinc oxide, cerium oxide, and the like, and organic or inorganic UV opaque pigments such as iron oxide, transparent red or yellow iron oxide, phthalocyanine blue, and mixtures thereof. The terms "pigment" and "colored filler" are used interchangeably.
實例染料包括(但不限於)基於溶劑及/或水溶液之彼等染 料,諸如酸性染料、偶氮染料、鹼性染料、直接染料、分散染料、反應性染料、溶劑染料、硫染料、媒染染料,例如釩酸鉍、蒽醌、苝、鋁、喹吖啶酮、噻唑、噻嗪、偶氮、靛藍、硝基、亞硝基、噁嗪、酞菁、喹啉、芪及三苯基甲烷染料。Example dyes include, but are not limited to, those based on solvents and/or aqueous solutions. Materials such as acid dyes, azo dyes, basic dyes, direct dyes, disperse dyes, reactive dyes, solvent dyes, sulfur dyes, mordant dyes such as bismuth vanadate, strontium, barium, aluminum, quinacridone, Thiazole, thiazine, azo, indigo, nitro, nitroso, oxazine, phthalocyanine, quinoline, guanidine and triphenylmethane dyes.
實例色澤劑包括(但不限於)分散於水基或水可混溶載劑中之顏料,諸如可購自Degussa,Inc.之AQUA-CHEM 896、可購自Eastman Chemical,Inc之Accurate Dispersions分公司之CHARISMA COLORANTS及MAXITONER INDUSTRIAL COLORANTS。Exemplary coloring agents include, but are not limited to, pigments dispersed in water-based or water-miscible vehicles, such as AQUA-CHEM 896, available from Degussa, Inc., Accurate Dispersions, Inc., available from Eastman Chemical, Inc. CHARISMA COLORANTS and MAXITONER INDUSTRIAL COLORANTS.
如上所述,著色劑可呈分散液形式,包括(但不限於)奈米粒子分散液。奈米粒子分散液可包括一或多種產生所要可見顏色及/或不透明性及/或視覺效應之高度分散的奈米粒子著色劑及/或著色劑粒子。奈米粒子分散液可包括具有小於150 nm(諸如小於70 nm或小於30 nm)之粒徑之著色劑(諸如顏料或染料)。奈米粒子可藉由用具有小於0.5 mm之粒徑之研磨介質研磨原料有機或無機顏料來產生。實例奈米粒子分散液及用於製造其之方法係如美國專利第6,875,800 B2中所示,該專利以引用之方式併入本文中。奈米粒子分散液亦可藉由結晶、沈澱、氣相冷凝及化學損耗(亦即部分溶解)來產生。為最小化塗料內奈米粒子之再聚結,可使用經樹脂塗佈之奈米粒子之分散液。如本文中所使用,"經樹脂塗佈之奈米粒子之分散液"係指一種如下連續相,其中使包含奈米粒子及塗佈於奈米粒子上之樹脂 的"複合微粒"小心地分散於其中。經樹脂塗佈之奈米粒子之實例分散液及用於製造其之方法係如2004年6月24日申請之美國申請案第10/876,031號(其以引用之方式併入本文中)及2003年6月24日申請之美國臨時申請案第60/482,167號(其亦以引用之方式併入本文中)中所示。As noted above, the colorant can be in the form of a dispersion including, but not limited to, a nanoparticle dispersion. The nanoparticle dispersion can include one or more highly dispersed nanoparticle colorants and/or colorant particles that produce the desired color and/or opacity and/or visual effect. The nanoparticle dispersion may include a color former (such as a pigment or dye) having a particle size of less than 150 nm, such as less than 70 nm or less than 30 nm. Nanoparticles can be produced by grinding a raw organic or inorganic pigment with a grinding medium having a particle size of less than 0.5 mm. Example nanoparticle dispersions and methods for making same are shown in U.S. Patent No. 6,875,800 B2, the disclosure of which is incorporated herein by reference. The nanoparticle dispersion can also be produced by crystallization, precipitation, gas phase condensation, and chemical loss (i.e., partial dissolution). To minimize re-agglomeration of the nanoparticles within the coating, a dispersion of resin coated nanoparticles can be used. As used herein, "dispersion of resin-coated nanoparticle" means a continuous phase in which a nanoparticle comprising a resin coated on a nanoparticle is coated The "composite particles" are carefully dispersed in them. Example dispersions of resin-coated nanoparticles and methods for making same are disclosed in US Application Serial No. 10/876,031, filed on Jun. U.S. Provisional Application Serial No. 60/482,167, the disclosure of which is incorporated herein by reference in its entirety in its entirety.
在一些實施例中,可用於多層塗層複合物之一或多個層中之特殊效應組合物包括顏料及/或組合物,其產生一或多種外觀效應,諸如反射率、珠光(pearlescence)、金屬光澤、磷光、螢光、光色性、光敏性、熱變色性、隨角變色性(goniochromism)及/或顏色變化。額外特殊效應組合物可提供其他可察覺性質,諸如反射率、不透明性或紋理。在非限制性實施例中,特殊效應組合物可產生色移,以便當以不同角度觀察塗料時塗料之顏色變化。實例顏色效應組合物係如美國專利第6,894,086號中所示,該專利以引用之方式併入本文中。額外顏色效應組合物可包括透明經塗佈雲母及/或合成雲母、經塗佈矽石、經塗佈氧化鋁、透明液晶顏料、液晶塗料及/或任何組合物,其中由於物質內之折射率差異但並非由於物質表面與空氣之間的折射率差異而產生干涉。In some embodiments, special effect compositions useful in one or more layers of a multilayer coating composite include pigments and/or compositions that produce one or more appearance effects, such as reflectivity, pearlescence, Metallic luster, phosphorescence, fluorescence, photochromism, photosensitivity, thermochromism, goniochromism and/or color change. Additional special effect compositions can provide other perceptible properties such as reflectivity, opacity or texture. In a non-limiting embodiment, the special effect composition can produce a color shift such that the color of the paint changes when the paint is viewed at different angles. An example color effect composition is shown in U.S. Patent No. 6,894,086, the disclosure of which is incorporated herein by reference. Additional color effect compositions can include transparent coated mica and/or synthetic mica, coated vermiculite, coated alumina, clear liquid crystal pigments, liquid crystal coatings, and/or any composition wherein the refractive index within the material The difference is not due to the difference in refractive index between the surface of the material and the air.
在其他實施例中,當曝露於一或多個光源時可逆地改變顏色之光敏組合物及/或光色組合物可用於多層複合物中之若干層中。光色及/或光敏組合物可藉由曝露於指定波長之輻射來活化。當組合物被激發時,分子結構發生改變且經改變之結構展現不同於組合物之原始顏色之新顏色。 當移除對輻射之曝露時,光色及/或光敏組合物可返回至靜態,其中組合物之原始顏色復原。在一非限制性實施例中,光色及/或光敏組合物可在非激發態時為無色的且在激發態時展現顏色。全色改變可在毫秒至數分鐘內出現,諸如20秒至60秒。實例光色及/或光敏組合物包括光色染料。In other embodiments, the photosensitive composition and/or photochromic composition that reversibly changes color when exposed to one or more light sources can be used in several layers of the multilayer composite. The light color and/or photosensitive composition can be activated by exposure to radiation of a specified wavelength. When the composition is excited, the molecular structure changes and the altered structure exhibits a new color that is different from the original color of the composition. When the exposure to radiation is removed, the light color and/or photosensitive composition can be returned to static where the original color of the composition is restored. In a non-limiting embodiment, the photochromic and/or photosensitive composition can be colorless in the non-excited state and exhibit color in the excited state. Full color changes can occur in milliseconds to minutes, such as 20 seconds to 60 seconds. Example light colors and/or photosensitive compositions include photochromic dyes.
在某些實施例中,光敏組合物及/或光色組合物可與聚合物及/或可聚合組分之聚合物質締合,及/或至少部分地與聚合物及/或可聚合組分之聚合物質鍵結(諸如藉由共價鍵結)。與光敏組合物可能會自塗料中遷移出來且結晶至基板中之一些塗料對比,根據本發明之非限制性實施例之與聚合物及/或可聚合組分締合及/或至少部分與聚合物及/或可聚合組分鍵結的光敏組合物及/或光色組合物具有自塗料向外之最小遷移。實例光敏組合物及/或光色組合物及用於製造其之方法係如2004年7月16日申請之美國申請案第10/892,919號中所示,該申請案以引用之方式併入本文中。In certain embodiments, the photosensitive composition and/or photochromic composition can be associated with the polymeric material of the polymer and/or polymerizable component, and/or at least partially with the polymer and/or polymerizable component. Polymeric bonding (such as by covalent bonding). In contrast to the coatings that may migrate out of the coating and crystallize into the substrate, in association with the polymer and/or polymerizable component and/or at least partially polymerized in accordance with non-limiting embodiments of the present invention. The photosensitive composition and/or the photochromic composition bonded to the polymeric and/or polymerizable component has a minimal migration from the coating. Illustrative photosensitive compositions and/or photochromic compositions and methods for making the same are shown in U.S. Patent Application Serial No. 10/892,919, filed on Jun. in.
雖然已詳細地描述本發明之特定實施例,但是熟習此項技術者應瞭解,對彼等細節之各種修改及替代可根據本揭示案之整個教示內容而展開。因此,所揭示之特定配置僅意欲為說明性的,而並非作為對本發明之範疇的限制,隨附申請專利範圍及其任何及所有等效體之完全寬度給出本發明之範疇。Although the specific embodiments of the present invention have been described in detail, it will be understood by those skilled in the art Therefore, the particular configurations disclosed are intended to be illustrative only, and not as a limitation of the scope of the invention, the scope of the invention, and the full breadth of any and all equivalents thereof.
(a)未分散可電沈積樹脂(a) Undispersed electrodepositable resin
程序:所有重量係以公克計。將第A項及第B項裝填至配備攪拌器、溫度量測探針、N2 層之4頸圓底燒瓶中且加熱至130℃。混合物放熱。開始在145℃下之1小時保持。峰值放熱為146℃且使溫度降至145℃。1小時後,將反應物冷卻至110℃且添加填料C、D及E。將混合物保持在115℃下兩小時。隨後添加填料F且將混合物保持30分鐘。隨後添加填料G且將混合物再保持30分鐘。Procedure: All weights are in grams. Items A and B were loaded into a 4-neck round bottom flask equipped with a stirrer, temperature measuring probe, N 2 layer and heated to 130 °C. The mixture is exothermic. Start at 1 hour at 145 ° C. The peak exotherm was 146 ° C and the temperature was lowered to 145 ° C. After 1 hour, the reaction was cooled to 110 ° C and fillers C, D and E were added. The mixture was kept at 115 ° C for two hours. Filler F was then added and the mixture was held for 30 minutes. Filler G was then added and the mixture was held for an additional 30 minutes.
(a)交聯劑(a) Crosslinker
程序:所有重量係以公克計。將第1項、第2項及第3項裝填至配備攪拌器、溫度量測探針及N2 層之4頸圓底燒瓶中。緩慢添加填料4,使溫度增加至60℃。隨後將混合物保持在60℃下30分鐘。隨後經約2小時添加填料5,使溫度增加至110℃之最大值。隨後添加填料6,且將混合物保持在110℃下直至i.r.光譜指示無殘餘異氰酸酯。Procedure: All weights are in grams. Items 1, 2, and 3 were loaded into a 4-neck round bottom flask equipped with a stirrer, a temperature measuring probe, and a N 2 layer. Filler 4 was added slowly to increase the temperature to 60 °C. The mixture was then kept at 60 ° C for 30 minutes. Filler 5 was then added over about 2 hours to increase the temperature to a maximum of 110 °C. Filler 6 was then added and the mixture was maintained at 110 ° C until the ir spectrum indicated no residual isocyanate.
(a)陽離子樹脂(a) cationic resin
程序:所有重量係以公克計。將第1項、第2項、第3項、第4項及第5項裝填至配備攪拌器、溫度量測探針、N2 層之4頸圓底燒瓶中且加熱至130℃。混合物放熱至約150℃。使溫度降至145℃且在該溫度下保持2小時。隨後添加填料6及7。添加填料8、9及10且將混合物保持在122℃下2小時。在良好攪拌下,將877 g反應混合物傾倒至第11項與第12項之溶液中。將所得分散液混合30分鐘且隨後在攪拌下,經約30分鐘添加填料13且充分混合。添加填料14且充分混合。在60-65℃下,真空蒸餾出約600 g之水及溶劑。所得水性分散液具有38.80%之固體含量。Procedure: All weights are in grams. The first, second, third, fourth, and fifth items were loaded into a 4-neck round bottom flask equipped with a stirrer, a temperature measuring probe, and a N 2 layer and heated to 130 °C. The mixture exothermed to about 150 °C. The temperature was lowered to 145 ° C and maintained at this temperature for 2 hours. Fillers 6 and 7 were subsequently added. Fillers 8, 9 and 10 were added and the mixture was held at 122 °C for 2 hours. With good agitation, 877 g of the reaction mixture was poured into the solutions of items 11 and 12. The resulting dispersion was mixed for 30 minutes and then, with stirring, the filler 13 was added over about 30 minutes and mixed well. Filler 14 is added and thoroughly mixed. About 600 g of water and solvent were distilled off under vacuum at 60-65 °C. The resulting aqueous dispersion had a solids content of 38.80%.
(a)添加劑(a) Additives
程序:所有重量係以公克計。在N2 下,將第1項及第2項裝填至備有機械攪拌器、冷凝器及溫度控制探針之圓底燒瓶中。將混合物加熱至60℃。經30分鐘逐滴添加第3項。隨後使混合物達到回流且保持回流1小時。隨後藉由先使用普通蒸餾,接著在60℃下真空蒸餾來移除甲苯。理論上,最終產物為100%不揮發的。Procedure: All weights are in grams. Under N 2 , items 1 and 2 were loaded into a round bottom flask equipped with a mechanical stirrer, condenser, and temperature control probe. The mixture was heated to 60 °C. The third item was added dropwise over 30 minutes. The mixture was then brought to reflux and maintained at reflux for 1 hour. The toluene was then removed by first using ordinary distillation followed by vacuum distillation at 60 °C. In theory, the final product is 100% non-volatile.
(a)經封端異氰酸酯(a) blocked isocyanate
程序:所有重量係以公克計。將第1項、第2項及第3項裝填至配備攪拌器、溫度量測探針及N2 層之4頸圓底燒瓶中。緩慢添加填料4,使溫度增加至60℃。隨後將混合物保持在60℃下30分鐘。隨後經約1小時添加填料5,使溫度增加至110℃之最大值。在110℃下將混合物保持30分鐘。隨後添加填料6,且將混合物保持在110℃下直至i.r.光譜指示無殘餘異氰酸酯。停止加熱;添加填料7且充分混合。 用0.2 N HCl滴定最終產物且發現其含有每公克樹脂0.736 meq.之鹼。Procedure: All weights are in grams. Items 1, 2, and 3 were loaded into a 4-neck round bottom flask equipped with a stirrer, a temperature measuring probe, and a N 2 layer. Filler 4 was added slowly to increase the temperature to 60 °C. The mixture was then kept at 60 ° C for 30 minutes. Filler 5 was then added over about 1 hour to increase the temperature to a maximum of 110 °C. The mixture was kept at 110 ° C for 30 minutes. Filler 6 was then added and the mixture was maintained at 110 ° C until the ir spectrum indicated no residual isocyanate. Heating was stopped; filler 7 was added and mixed well. The final product was titrated with 0.2 N HCl and found to contain 0.736 meq. of base per gram of resin.
(a)固化結果第1組(a) curing result group 1
在以下固化實例中,將樹脂製為不分散於溶劑中,與交聯劑(固化實例A及B)及觸媒摻合,攪拌直至均勻,且使其硬化隔夜。隨後使用Bird棒施料器施加塗料達到大致25微米薄膜厚度。隨後在室溫下使板急驟乾燥(flash)至少1小時,隨後在所指示溫度及時間下在電烘箱中固化。使用ASTM D5402-6方法A,藉由丙酮雙重摩擦,測試板之固化,以下為例外之處:使用丙酮而非MIBK,不存在板之水清潔,使用厚棉布進行100次雙重摩擦,且評級量表如下所列。In the following curing examples, the resin was made not to be dispersed in a solvent, blended with a crosslinking agent (curing examples A and B) and a catalyst, stirred until uniform, and allowed to harden overnight. The coating was then applied using a Bird bar applicator to achieve a film thickness of approximately 25 microns. The plate was then flashed at room temperature for at least one hour and then cured in an electric oven at the indicated temperature and time. Using ASTM D5402-6 Method A, the board was cured by double rubbing with acetone. The following are the exceptions: acetone is used instead of MIBK, there is no water cleaning of the board, 100 times of double rubbing with thick cotton cloth, and rating The table is listed below.
(a)陽離子樹脂(a) cationic resin
將物質# 1-4(EPON 828、雙酚A-環氧乙烷加合物、雙酚A及2-丁氧基乙醇)裝填至反應容器中且在氮氣氛下加熱至125℃。添加苄基二甲胺之第一部分(物質# 5)且使反應放熱至約180℃。當反應達到160℃時,開始1小時之保持。峰值放熱後,使樹脂冷卻返回至160℃,繼續保持。保持後,隨後使反應物冷卻至130℃且添加苄基二甲胺之第二部分(物質# 6)。在130℃下保持反應物直至1070之外推環氧當量重量。在預期環氧當量重量下,連續添加物質7及 8(二酮亞胺及N-甲基乙醇胺),且使混合物放熱至約150℃。峰值放熱時,開始1小時之保持,同時使反應物冷卻至125℃。1小時保持後,將樹脂分散於由胺磺酸及去離子水之第一部分組成之水性介質中。稍後用去離子水之第二、第三及第四部分稀釋分散液。真空汽提所得陽離子皂直至由二酮亞胺之水解所釋放之甲基異丁基酮不到0.05%。Substance #1-4 (EPON 828, bisphenol A-ethylene oxide adduct, bisphenol A and 2-butoxyethanol) was charged into a reaction vessel and heated to 125 ° C under a nitrogen atmosphere. The first portion of benzyldimethylamine (Substance #5) was added and the reaction was allowed to exotherm to about 180 °C. When the reaction reached 160 ° C, the retention was started for 1 hour. After the peak exotherm, the resin was cooled back to 160 ° C and continued to be held. After holding, the reaction was then cooled to 130 ° C and the second portion of benzyl dimethylamine (substance #6) was added. The reactants were held at 130 ° C until the 1070 extrapolated epoxy equivalent weight. Continuous addition of substance 7 under the expected epoxy equivalent weight 8 (diketimine and N-methylethanolamine) and the mixture was allowed to exotherm to about 150 °C. At the peak exotherm, one hour of hold was maintained while the reaction was cooled to 125 °C. After 1 hour of maintenance, the resin was dispersed in an aqueous medium consisting of the first portion of amine sulfonic acid and deionized water. The dispersion was later diluted with the second, third and fourth portions of deionized water. The cationic soap obtained by vacuum stripping was less than 0.05% of methyl isobutyl ketone released by hydrolysis of the diketimine.
向2517 g上述聚合物水溶液中添加443 g去離子水。在氮氣層下,將混合物加熱至70℃。隨後在良好攪動下,經15分鐘添加66.4 g之EPON 828於mibk中之85%溶液。添加5.81 g之mibk作為用於EPON 828溶液之清洗劑且混合物保持在70℃下45分鐘。經70分鐘將混合物加熱至90℃且在良好混合下,在該溫度下保持3小時。隨後添加337 g之去離子水且將分散液冷卻至小於35℃且傾倒出來。To 2517 g of the above aqueous polymer solution was added 443 g of deionized water. The mixture was heated to 70 ° C under a nitrogen blanket. 66.4 g of 85% solution of EPON 828 in mibk was then added over 15 minutes with good agitation. 5.81 g of mibk was added as a cleaning agent for the EPON 828 solution and the mixture was kept at 70 ° C for 45 minutes. The mixture was heated to 90 ° C over 70 minutes and maintained at this temperature for 3 hours with good mixing. Then 337 g of deionized water was added and the dispersion was cooled to less than 35 ° C and poured out.
(a)陽離子樹脂(a) cationic resin
將物質1、2、3添加至經適當配備之圓底燒瓶中。隨後將混合物加熱至125℃。隨後添加物質4。使反應混合物放熱至160℃,按需要添加熱以達到160℃。隨後反應混合物保持在160-170℃下1 hr。添加物質5且充分混合。隨後儘可能快速地添加物質6。將所得反應混合物加熱至130℃,且保持3 hr。將物質7及8預摻合且在攪動下將反應混合物添加至酸性水溶液中以形成陽離子性分散液。Substances 1, 2, and 3 were added to a suitably equipped round bottom flask. The mixture was then heated to 125 °C. Substance 4 was subsequently added. The reaction mixture was allowed to exotherm to 160 ° C and heat was added as needed to reach 160 °C. The reaction mixture was then maintained at 160-170 ° C for 1 hr. Substance 5 was added and mixed well. Substance 6 is then added as quickly as possible. The resulting reaction mixture was heated to 130 ° C for 3 hr. The materials 7 and 8 were preblended and the reaction mixture was added to the acidic aqueous solution under agitation to form a cationic dispersion.
(a)陽離子樹脂(a) cationic resin
程序:所有重量係以公克計。將第1項、第2項、第3 項、第4項及第5項裝填至配備攪拌器、溫度量測探針、N2 層之4頸圓底燒瓶中且加熱至130℃。混合物放熱至約150℃。使溫度降至145℃且在該溫度下保持2小時。隨後添加填料6及7。添加填料8、9及10且將混合物保持在122℃下2小時。添加填料11(預熱至約60℃)且在不加熱之情況下混合10分鐘。在良好攪拌下,將969 g反應混合物傾倒至第12項與第13項之溶液中。將所得分散液混合30分鐘且隨後在攪拌下,經約30分鐘添加填料14且充分混合。添加填料15且充分混合。在60-65℃下,真空蒸餾出約600 g之水及溶劑。所得水性分散液具有34.16%之固體含量。Procedure: All weights are in grams. The first, second, third, fourth, and fifth items were loaded into a 4-neck round bottom flask equipped with a stirrer, a temperature measuring probe, and a N 2 layer and heated to 130 °C. The mixture exothermed to about 150 °C. The temperature was lowered to 145 ° C and maintained at this temperature for 2 hours. Fillers 6 and 7 were subsequently added. Fillers 8, 9 and 10 were added and the mixture was held at 122 °C for 2 hours. Filler 11 was added (preheated to about 60 ° C) and mixed for 10 minutes without heating. With good agitation, 969 g of the reaction mixture was poured into the solutions of items 12 and 13. The resulting dispersion was mixed for 30 minutes and then the filler 14 was added over about 30 minutes with stirring and mixed well. Filler 15 was added and mixed well. About 600 g of water and solvent were distilled off under vacuum at 60-65 °C. The resulting aqueous dispersion had a solids content of 34.16%.
(a)陽離子樹脂(a) cationic resin
程序:所有重量係以公克計。將第1項、第2項、第3項、第4項及第5項裝填至配備攪拌器、溫度量測探針、N2 層之4頸圓底燒瓶中且加熱至130℃。混合物放熱至約150℃。使溫度降至145℃且在該溫度下保持2小時。隨後添加填料6及7。添加填料8、9及10且將混合物保持在122℃下2小時。在良好攪拌下,將1991 g反應混合物傾倒至第11項與第12項之溶液中。隨後添加填料13,且將所得分散液混合30分鐘且隨後在攪拌下,經約30分鐘添加填料14且充分混合。添加填料15且充分混合。在60-65℃下,真空蒸餾出約1100 g之水及溶劑。所得水性分散液具有39.37%之固體含量。Procedure: All weights are in grams. The first, second, third, fourth, and fifth items were loaded into a 4-neck round bottom flask equipped with a stirrer, a temperature measuring probe, and a N 2 layer and heated to 130 °C. The mixture exothermed to about 150 °C. The temperature was lowered to 145 ° C and maintained at this temperature for 2 hours. Fillers 6 and 7 were subsequently added. Fillers 8, 9 and 10 were added and the mixture was held at 122 °C for 2 hours. The 1991 g reaction mixture was poured into the solutions of items 11 and 12 with good agitation. Filler 13 was then added and the resulting dispersion was mixed for 30 minutes and then the filler 14 was added over about 30 minutes with stirring and mixed well. Filler 15 was added and mixed well. About 1100 g of water and solvent were distilled off under vacuum at 60-65 °C. The resulting aqueous dispersion had a solids content of 39.37%.
(a)陽離子樹脂(a) cationic resin
將物質1及2裝填至經適當配備之3公升圓底燒瓶中。將混合物加熱至130℃且添加物質3。將反應混合物保持在135℃下直至混合物之環氧當量重量為1232。隨後添加物質4且隨後將混合物冷卻至95℃。添加物質5且使反應物保持在95℃下直至50/50稀釋於甲氧基丙醇中之樹脂之樣本的Gardner-Holdt黏度為"H-J"。添加物質6及7之混合物且保持混合物直至50/50稀釋於甲氧基丙醇中之樹脂之樣本的Gardner-Holdt黏度為"Q-"。將988.6 g之該樹脂傾倒至1242.13 g去離子水與30.2 g胺磺酸之混合物中且混合30分鐘。隨後添加614.8 g去離子水且充分混合。最終水性分散液具有35.8%之經量測固體含量。Materials 1 and 2 were loaded into a suitably equipped 3 liter round bottom flask. The mixture was heated to 130 ° C and substance 3 was added. The reaction mixture was maintained at 135 ° C until the epoxy equivalent weight of the mixture was 1232. Substance 4 was then added and the mixture was subsequently cooled to 95 °C. The Gardner-Holdt viscosity of the sample in which the substance 5 was added and the reactant was kept at 95 ° C until 50/50 of the resin diluted in methoxypropanol was "H-J". The Gardner-Holdt viscosity of the sample of the resin in which the mixture of substances 6 and 7 was added and the mixture was maintained until 50/50 diluted in methoxypropanol was "Q-". 988.6 g of this resin was poured into a mixture of 1242.13 g of deionized water and 30.2 g of amine sulfonic acid and mixed for 30 minutes. Then 614.8 g of deionized water was added and mixed well. The final aqueous dispersion had a measured solids content of 35.8%.
(a)顏料漿(a) pigment paste
將物質1及2預摻合於平底金屬容器中。在高剪切科勒斯攪拌(Cowles)下,將物質3至5連續添加至混合物中。使漿科勒斯攪拌30 min。在低剪切混合下添加物質6且將漿攪拌直至均勻。隨後,將漿轉移至配備水冷套及使用2 mm鋯石介質之RED HEAD中型研磨機。隨後將漿研磨直至觀察到>7之Hegman。Materials 1 and 2 were preblended in a flat bottom metal container. Substances 3 to 5 were continuously added to the mixture under high shear Coles. The slurry was stirred for 30 min. Substance 6 was added under low shear mixing and the slurry was stirred until homogeneous. Subsequently, the slurry was transferred to a RED HEAD medium mill equipped with a water cooled jacket and using 2 mm zircon media. The slurry was then milled until a Hegman of >7 was observed.
(a)油漆(a) paint
在攪動下,連續添加物質1-9且攪拌直至均勻以產生樹脂摻合物。此產生具有以RS計1.28%之來自樹脂之1,5,7-三 氮雜雙環(4.4.0)癸-5-烯的油漆。藉由超濾移除20重量百分比之油漆且以去離子水置換。Under agitation, materials 1-9 were continuously added and stirred until homogeneous to produce a resin blend. This yields 1.28% of the 1,5,7-three from the resin in terms of RS. Azabicyclo (4.4.0) indole-5-ene paint. 20 weight percent of the paint was removed by ultrafiltration and replaced with deionized water.
(a)油漆(a) paint
在攪動下,連續添加物質1-9且攪拌直至均勻以產生樹脂摻合物。此產生具有以RS計1.3%之氧化二丁錫觸媒之油漆且用作對照參考。藉由超濾移除20重量百分比之油漆且以去離子水置換。Under agitation, materials 1-9 were continuously added and stirred until homogeneous to produce a resin blend. This produced a paint with 1.3% dibutyltin oxide catalyst in terms of RS and was used as a control reference. 20 weight percent of the paint was removed by ultrafiltration and replaced with deionized water.
(a)研磨媒劑(a) grinding media
程序:所有重量以公克計。將第1項、第2項、第3項、第4項及第5項裝填至配備攪拌器、溫度量測探針、N2 層之4頸圓底燒瓶中且加熱至130℃。混合物放熱至160-180℃。在160-170℃下保持1小時。停止加熱且緩慢添加6。在60℃下,添加7。使混合物放熱至110℃,隨後在110-120℃下保持1小時。向920 g反應混合物中添加39 g胺磺酸及1153 g去離子水且充分混合。添加額外15.6 g胺磺酸且充分混合。混合物為具有38.2%之固體含量的黏性輕微混濁之溶液。Procedure: All weights are in grams. The first, second, third, fourth, and fifth items were loaded into a 4-neck round bottom flask equipped with a stirrer, a temperature measuring probe, and a N 2 layer and heated to 130 °C. The mixture exothermed to 160-180 °C. Hold at 160-170 ° C for 1 hour. Stop heating and add 6 slowly. At 60 ° C, add 7. The mixture was allowed to exotherm to 110 ° C and then held at 110-120 ° C for 1 hour. To the 920 g of the reaction mixture was added 39 g of amine sulfonic acid and 1153 g of deionized water and mixed well. Add an additional 15.6 g of amine sulfonic acid and mix well. The mixture was a slightly viscous turbid solution having a solids content of 38.2%.
(a)研磨媒劑pH調整(a) Grinding media pH adjustment
連續添加物質,產生pH 7.05之樹脂分散液。The substance was continuously added to produce a resin dispersion having a pH of 7.05.
(b)顏料漿(b) pigment paste
將物質1及2預摻合於平底金屬容器中。在高剪切科勒斯攪拌下,將物質3至5連續添加至混合物中。使漿科勒斯攪拌30 min。在低剪切混合下添加物質6且將漿攪拌直至均勻。隨後,將漿轉移至配備水冷套及使用2 mm鋯石介質之RED HEAD中型研磨機。隨後將漿研磨直至觀察到>7之Hegman。Materials 1 and 2 were preblended in a flat bottom metal container. Substances 3 to 5 were continuously added to the mixture under high shear Kohler stirring. The slurry was stirred for 30 min. Substance 6 was added under low shear mixing and the slurry was stirred until homogeneous. Subsequently, the slurry was transferred to a RED HEAD medium mill equipped with a water cooled jacket and using 2 mm zircon media. The slurry was then milled until a Hegman of >7 was observed.
(a)油漆(a) paint
在攪動下,連續添加物質1-7且攪拌直至均勻以產生樹脂摻合物。此產生具有以RS計1.25%之來自研磨媒劑之1,5,7-三氮雜雙環(4.4.0)癸-5-烯的油漆。藉由超濾移除15重量百分比之油漆且以去離子水置換。Under agitation, materials 1-7 were continuously added and stirred until homogeneous to produce a resin blend. This produced a paint having 1.25% of the 1,5,7-triazabicyclo (4.4.0) indol-5-ene from the grinding media. 15 weight percent of the paint was removed by ultrafiltration and replaced with deionized water.
(a)油漆(a) paint
在攪動下,連續添加物質1-5且攪拌直至均勻以產生樹脂摻合物。添加物質6且使油漆攪拌直至均勻。添加物質7且使油漆攪拌隔夜。此產生無觸媒之油漆。Under agitation, materials 1-5 were continuously added and stirred until homogeneous to produce a resin blend. Add substance 6 and stir the paint until it is homogeneous. Add substance 7 and allow the paint to stir overnight. This produces a non-catalytic paint.
(a)陽離子樹脂(a) cationic resin
程序:所有重量係以公克計。將第A項及第B項裝填至配備攪拌器、溫度量測探針、N2 層之4頸圓底燒瓶中且加熱至125℃。混合物放熱。開始在160℃下之1小時保持。峰值放熱為171℃且使溫度降至160℃。1小時後,添加填料C。隨後添加填料D且在115℃下將混合物保持30分鐘。隨後添加填料E且將混合物再保持30分鐘。在良好攪拌下,將1260 g反應混合物傾倒至第F項之溶液中。將所得分散液混合30分鐘且隨後在攪拌下,經約30分鐘添加填料G且充分混合。添加填料H且充分混合。隨後在60-65℃下 真空蒸餾出水及溶劑。所得水性分散液具有39.19%之固體含量。Procedure: All weights are in grams. Items A and B were loaded into a 4-neck round bottom flask equipped with a stirrer, temperature measuring probe, N 2 layer and heated to 125 °C. The mixture is exothermic. Start at 1 hour at 160 ° C. The peak exotherm was 171 ° C and the temperature was lowered to 160 ° C. After 1 hour, filler C was added. Filler D was then added and the mixture was held at 115 ° C for 30 minutes. Filler E was then added and the mixture was held for an additional 30 minutes. With good agitation, 1260 g of the reaction mixture was poured into the solution of item F. The resulting dispersion was mixed for 30 minutes and then, with stirring, the filler G was added over about 30 minutes and mixed well. Add filler H and mix well. Water and solvent are then distilled off under vacuum at 60-65 °C. The resulting aqueous dispersion had a solids content of 39.19%.
(b)交聯劑之製備(b) Preparation of crosslinking agent
將1裝填至反應器中。經兩小時逐滴添加2。反應放熱。調整添加速率以便使溫度不超過70℃。隨後用乙二醇單2-乙基己基醚稀釋反應物。Fill 1 into the reactor. 2 was added dropwise over two hours. The reaction is exothermic. The rate of addition was adjusted so that the temperature did not exceed 70 °C. The reaction was then diluted with ethylene glycol mono-2-ethylhexyl ether.
在攪動下,連續添加物質1及2且攪拌直至均勻以產生樹脂摻合物。此產生具有以RS計1.99%之1,5,7-三氮雜雙環(4.4.0)癸-5-烯之油漆。Under agitation, substances 1 and 2 were continuously added and stirred until uniform to produce a resin blend. This produced a paint having 1.95% 1,5,7-triazabicyclo (4.4.0) indol-5-ene in terms of RS.
(a)固化結果第2組(a) curing result group 2
在足以提供約24微米之電沈積薄膜厚度之條件下,使用熟習此項技術者所知之程序,將實例13、14、17、18、20之可電沈積塗料組合物電沈積在磷酸鹽化鋼上。隨後,在所指示溫度及時間下,在電烘箱中將板固化。使用ASTM D5402-6方法A,藉由丙酮雙重摩擦,測試板之固化,以下為例外之處:使用丙酮而非MIBK,不存在板之水清潔, 使用厚棉布進行100次雙重摩擦,且評級量表如下所列。The electrodepositable coating compositions of Examples 13, 14, 17, 18, 20 were electrodeposited in phosphating under conditions sufficient to provide a thickness of the electrodeposited film of about 24 microns, using procedures well known to those skilled in the art. On steel. Subsequently, the panels were cured in an electric oven at the indicated temperature and time. The test panels were cured by double rubbing with acetone using ASTM D5402-6 Method A. The following are exceptions: using acetone instead of MIBK, there is no water cleaning of the board, 100 double rubs were performed using a thick cotton cloth, and the rating scales are listed below.
(a)觸媒漿(a) Catalytic pulp
將物質1及2添加至2公升鋼製燒杯中且在高剪切科勒斯葉片攪動下混合。將物質3及4預混合且緩慢添加至鉍樹脂漿中,且在高剪切科勒斯攪動下,將所得混合物再攪拌30分鐘。添加物質5,且在配備水冷套之Chicago Boiler Red Head研磨機中,使用2 mm圓形鋯石介質使漿被介質研磨3小時。Substances 1 and 2 were added to a 2 liter steel beaker and mixed under high shear Kohler blade agitation. Substances 3 and 4 were premixed and slowly added to the resin slurry, and the resulting mixture was stirred for a further 30 minutes under high shear Kohler agitation. Substance 5 was added and the slurry was ground for 3 hours using a 2 mm round zircon medium in a Chicago Boiler Red Head mill equipped with a water jacket.
(a)研磨媒劑(a) grinding media
該實例描述含四級銨鹽之顏料-研磨型樹脂之製備。實 例23-1描述胺-酸式鹽四級銨化劑之製備且實例23-2描述含環氧基聚合物之製備,該聚合物隨後用實例23-1之胺-酸式鹽四級銨化。This example describes the preparation of a pigment-grinding resin containing a quaternary ammonium salt. real Example 23-1 describes the preparation of an amine-acid salt quaternizing agent and Example 23-2 describes the preparation of an epoxy-containing polymer which is subsequently subjected to the amine-acid salt quaternary ammonium salt of Example 23-1. Chemical.
23-123-1
使用以下程序製備胺-酸式鹽四級銨化劑:
向經適當配備之5公升燒瓶中裝填物質1。隨後在輕微攪動下,經1.5小時時期裝填物質2,接著裝填物質3之清洗劑。在該添加期間,使反應混合物放熱至約89℃之溫度且在彼溫度下保持約1小時直至如藉由紅外光譜所測定,異氰酸酯反應完全。在彼時間,經25分鐘時期添加物質4,接著添加物質5。在約80℃下保持反應溫度約6小時直至獲得70.6之失速酸值。Charge the material 1 into a suitably equipped 5 liter flask. Subsequent to the 1.5 hour period, the substance 2 was filled with a slight agitation, followed by the cleaning agent of the substance 3. During this addition, the reaction mixture was allowed to exotherm to a temperature of about 89 ° C and held at that temperature for about 1 hour until the isocyanate reaction was complete as determined by infrared spectroscopy. At that time, substance 4 was added over a period of 25 minutes, followed by addition of substance 5. The reaction temperature was maintained at about 80 ° C for about 6 hours until a stall acid value of 70.6 was obtained.
23-223-2
使用以下程序製備含四級銨鹽基團之聚合物。A polymer containing a quaternary ammonium salt group was prepared using the following procedure.
在輕微攪動下,將物質1裝填至經適當配備之5公升燒瓶中。隨後添加物質2,接著添加物質3及物質4。將反應混合物加熱至約140℃,使其放熱至約180℃,隨後冷卻至約160℃且在彼溫度下保持約1小時。在彼時間,聚合產物具有982.9之環氧當量重量。隨後將反應混合物冷卻至約130℃之溫度,在該時間,添加物質5且使溫度降至約95-100℃,接著經15分鐘之時期,添加物質6胺-酸性四級銨化劑23-1,且隨後接著添加約1428.1重量份之去離子水。在約80℃下將反應溫度保持大致6小時直至反應產物之酸值下降低於1.0。進一步用約334.7重量份之丁基卡必醇甲醛溶劑稀釋所得含四級銨鹽基團之顏料研磨型樹脂。Substrate 1 was loaded into a suitably equipped 5 liter flask with gentle agitation. Substance 2 is then added, followed by addition of Substance 3 and Substance 4. The reaction mixture was heated to about 140 ° C, allowed to exotherm to about 180 ° C, then cooled to about 160 ° C and held at that temperature for about 1 hour. At that time, the polymerization product had an epoxy equivalent weight of 982.9. The reaction mixture is then cooled to a temperature of about 130 ° C, at which time substance 5 is added and the temperature is lowered to about 95-100 ° C, followed by the addition of the substance 6 amine-acid quaternization agent 23 - over a period of 15 minutes. 1, and then about 1428.1 parts by weight of deionized water is added. The reaction temperature was maintained at about 80 ° C for about 6 hours until the acid value of the reaction product fell below 1.0. Further, the resulting quaternary ammonium salt-containing pigment-milled resin was diluted with about 334.7 parts by weight of a butyl carbitol formaldehyde solvent.
(a)研磨媒劑(a) grinding media
將物質1至5裝填至經適當配備之燒瓶中且加熱至125℃。使混合物放熱至175℃且隨後在160-165℃下保持1 hr。1 hr保持後,添加物質6-7。冷卻至80℃且添加物質8-11。在78℃下保持直至所量測酸值小於2。當酸值OK時,在攪拌下將1288.2 g樹脂傾倒至1100 g去離子水(物質12)中。混合30分鐘,隨後添加物質13且充分混合。藉由超濾移除30%之塗料組合物且用去離子水置換。Substances 1 to 5 were charged into a suitably equipped flask and heated to 125 °C. The mixture was allowed to exotherm to 175 ° C and then held at 160-165 ° C for 1 hr. After 1 hr was maintained, substances 6-7 were added. Cool to 80 ° C and add material 8-11. Maintain at 78 ° C until the measured acid value is less than 2. When the acid value was OK, 1288.2 g of the resin was poured into 1100 g of deionized water (substance 12) with stirring. Mix for 30 minutes, then add substance 13 and mix well. 30% of the coating composition was removed by ultrafiltration and replaced with deionized water.
(a)顏料漿(a) pigment paste
將物質1-8預摻合於平底塑料容器中。將物質9添加至混合物中以降低黏度。隨後在PREMIER研磨機上研磨該漿直至觀察到>7之Hegman讀數。隨後將物質10添加至漿中且將漿再研磨1小時。The materials 1-8 were pre-blended into a flat bottom plastic container. Substance 9 was added to the mixture to reduce the viscosity. The slurry was then milled on a PREMIER mill until a Hegman reading of >7 was observed. Substance 10 was then added to the slurry and the slurry was milled for an additional hour.
(a)油漆(a) paint
在攪動下連續添加物質1至4且使其攪拌24小時。該油漆以來自所有油漆組分之總樹脂固體計,為21.5%固體,1.2%鉍。將該油漆製成12000公克之規模。藉由超濾移除30%之塗料組合物且用去離子水置換。Substances 1 to 4 were continuously added under agitation and allowed to stir for 24 hours. The paint was 21.5% solids, 1.2% hydrazine based on total resin solids from all paint components. The paint was made to a scale of 12,000 grams. 30% of the coating composition was removed by ultrafiltration and replaced with deionized water.
(a)添加劑分散液(a) additive dispersion
將物質1及2摻合直至均勻。隨後在攪動下添加物質3,形成分散液。Compounds 1 and 2 were blended until homogeneous. Substance 3 was then added under agitation to form a dispersion.
(a)油漆(a) paint
將物質2及3預摻合且在攪動下添加至油漆1(物質1)之一部分中。該油漆以來自所有油漆組分之總樹脂固體計,為21.0%固體、1.17%鉍及2%之實例4之添加劑。藉由超濾移除30%之塗料組合物且用去離子水置換。Substances 2 and 3 were preblended and added to a portion of Paint 1 (Substance 1) under agitation. The paint was 21.0% solids, 1.17% bismuth and 2% of the additive of Example 4, based on the total resin solids of all paint components. 30% of the coating composition was removed by ultrafiltration and replaced with deionized water.
(a)陽離子樹脂(a) cationic resin
程序:所有重量以公克計。將第1項、第2項、第3項、第4項及第5項裝填至配備攪拌器、溫度量測探針、N2 層之4頸圓底燒瓶中且加熱至130℃。混合物放熱,但不允許超過145℃。在145℃下將溫度保持且歷時2小時。隨後添加填料6及7。使反應進行直至觀察到1167之環氧當量重量。添加填料8、9及10且將混合物保持在122℃下2小時。停止加熱,且添加物質11且將混合物攪拌10分鐘。在良好攪拌下,將反應混合物傾倒至第12項與第13項之溶液中。30分鐘後,經30分鐘緩慢添加物質14。在60-65℃下真空蒸餾 出約700 g之水及溶劑,且用去離子水補充。所得水性分散液具有37.9%之固體含量。Procedure: All weights are in grams. The first, second, third, fourth, and fifth items were loaded into a 4-neck round bottom flask equipped with a stirrer, a temperature measuring probe, and a N 2 layer and heated to 130 °C. The mixture exotherms but is not allowed to exceed 145 °C. The temperature was maintained at 145 ° C for 2 hours. Fillers 6 and 7 were subsequently added. The reaction was allowed to proceed until an epoxy equivalent weight of 1167 was observed. Fillers 8, 9 and 10 were added and the mixture was held at 122 °C for 2 hours. Heating was stopped and substance 11 was added and the mixture was stirred for 10 minutes. The reaction mixture was poured into the solutions of items 12 and 13 with good agitation. After 30 minutes, the substance 14 was slowly added over 30 minutes. About 700 g of water and solvent were distilled off under vacuum at 60-65 ° C and replenished with deionized water. The resulting aqueous dispersion had a solids content of 37.9%.
(a)陽離子樹脂(a) cationic resin
將第1項及第2項裝填至配備攪拌器、溫度量測探針及N2 層之4頸圓底燒瓶中且混合10分鐘。添加第3項且隨後經約1小時裝填第4項,使反應混合物放熱至100℃之最高溫度。隨後在100℃下保持混合物直至紅外光譜指示不存在異氰酸酯(大致1小時)。將1395 g之反應混合物傾倒至第5項與第6項之混合物中且混合1小時。隨後經約1小時添加第7項且混合約1小時。所得水溶液具有約36%之固體含量。Fill the first and second items into a 4-neck round bottom flask equipped with a stirrer, temperature measuring probe and N 2 layer and mix for 10 minutes. Item 3 was added and then item 4 was filled over about 1 hour and the reaction mixture was allowed to exotherm to a maximum temperature of 100 °C. The mixture was then held at 100 ° C until the infrared spectrum indicated the absence of isocyanate (approximately 1 hour). 1395 g of the reaction mixture was poured into the mixture of the 5th and 6th items and mixed for 1 hour. The seventh item was then added over about 1 hour and mixed for about 1 hour. The resulting aqueous solution has a solids content of about 36%.
(a)油漆(a) paint
在攪動下,連續添加物質1-8且攪拌直至均勻以產生樹脂摻合物。添加物質9且使油漆攪拌直至均勻,最少30分鐘。添加物質10且使油漆攪拌直至均勻,最少30分鐘。Under agitation, materials 1-8 were continuously added and stirred until homogeneous to produce a resin blend. Add substance 9 and stir the paint until homogeneous for a minimum of 30 minutes. Add substance 10 and stir the paint until homogeneous for a minimum of 30 minutes.
(a)油漆(a) paint
在攪動下,將物質1至4連續添加至4公升容器中,在添加之間攪拌10分鐘。此產生以樹脂固體計具有0.7%1,5,7-三氮雜雙環(4.4.0)癸-5-烯及0.2%鋅金屬之可電沈積油漆。Substances 1 to 4 were continuously added to a 4 liter vessel under agitation and stirred for 10 minutes between additions. This produced an electrodepositable paint having 0.7% 1,5,7-triazabicyclo (4.4.0) fluorene-5-ene and 0.2% zinc metal based on the resin solids.
(a)固化結果第3組(a) curing result group 3
對實例24、26、31及32而言,將各可電沈積塗料組合物隨後在足以提供約24微米之電沈積薄膜厚度之條件下電沈積至磷酸鹽化冷軋鋼上。隨後將板在175C下固化20分鐘且使用ASTM D5402-6方法A,藉由丙酮雙重摩擦,測試其固化,以下為例外之處:使用丙酮而非MIBK,不存在板之水清潔,使用厚棉布進行100次雙重摩擦,且評級量表如下所列。For Examples 24, 26, 31 and 32, each electrodepositable coating composition was then electrodeposited onto the phosphated cold rolled steel under conditions sufficient to provide a thickness of the electrodeposited film of about 24 microns. The panels were then cured at 175 C for 20 minutes and tested for curing by double rubbing with acetone using ASTM D5402-6 Method A, with the following exceptions: use of acetone instead of MIBK, no water cleaning of the board, use of thick cotton cloth 100 double rubs were performed and the rating scales are listed below.
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HK1142354A1 (en) | 2010-12-03 |
CN101802109B (en) | 2014-08-27 |
CN101802109A (en) | 2010-08-11 |
EP2176366A1 (en) | 2010-04-21 |
US20110005937A1 (en) | 2011-01-13 |
TW200918621A (en) | 2009-05-01 |
UA97682C2 (en) | 2012-03-12 |
CA2695541A1 (en) | 2009-02-12 |
RU2445332C2 (en) | 2012-03-20 |
BRPI0813612A2 (en) | 2015-08-25 |
BRPI0813612B1 (en) | 2019-05-07 |
AU2008285401B2 (en) | 2011-10-13 |
PL2176366T3 (en) | 2013-09-30 |
PE20090749A1 (en) | 2009-07-09 |
US20090042060A1 (en) | 2009-02-12 |
CA2695541C (en) | 2012-10-09 |
AR067815A1 (en) | 2009-10-21 |
MY159660A (en) | 2017-01-13 |
WO2009021095A1 (en) | 2009-02-12 |
RU2010108338A (en) | 2011-09-20 |
US8884059B2 (en) | 2014-11-11 |
MX2010001431A (en) | 2010-03-01 |
KR20100053624A (en) | 2010-05-20 |
MY145174A (en) | 2011-12-30 |
EP2176366B1 (en) | 2013-04-24 |
ES2411474T3 (en) | 2013-07-05 |
UY31274A1 (en) | 2009-03-02 |
US7842762B2 (en) | 2010-11-30 |
KR101158988B1 (en) | 2012-06-21 |
AU2008285401A1 (en) | 2009-02-12 |
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